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1
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0025286831
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Pituitary cell phenotypes involve cell-specific Pit-1 mRNA translation and synergistic interactions with other classes of transcription factors
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Simmons DM, Voss JW, Ingraham HA, Holloway JM, Broide RS, Rosenfeld MG, Swanson LW. Pituitary cell phenotypes involve cell-specific Pit-1 mRNA translation and synergistic interactions with other classes of transcription factors. Genes Dev. 4:1990;695-711.
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Simmons, D.M.1
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Holloway, J.M.4
Broide, R.S.5
Rosenfeld, M.G.6
Swanson, L.W.7
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In situ hybridization analysis of anterior pituitary hormone gene expression during fetal mouse development
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Japón MA, Rubinstein M, Low MJ. In situ hybridization analysis of anterior pituitary hormone gene expression during fetal mouse development. J Histochem Cytochem. 42:1994;1117-1125.
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Japón, M.A.1
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Low, M.J.3
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3
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The pituitary-specific transcription factor GHF-1 is a homeobox-containing protein
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Bodner M, Castrillo JL, Theill LE, Deerinck T, Ellisman M, Karin M. The pituitary-specific transcription factor GHF-1 is a homeobox-containing protein. Cell. 50:1988;267-275.
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Bodner, M.1
Castrillo, J.L.2
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Ellisman, M.5
Karin, M.6
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4
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A tissue-specific transcription factor containing a homeodomain specifies a pituitary phenotype
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Ingraham HA, Chen R, Mangalam HJ, Elsholtz HP, Flynn SE, Lin CR, Simmons DM, Swanson L, Rosenfeld MG. A tissue-specific transcription factor containing a homeodomain specifies a pituitary phenotype. Cell. 50:1988;519-529.
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Ingraham, H.A.1
Chen, R.2
Mangalam, H.J.3
Elsholtz, H.P.4
Flynn, S.E.5
Lin, C.R.6
Simmons, D.M.7
Swanson, L.8
Rosenfeld, M.G.9
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5
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0026657816
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Anterior pituitary development: Short tales from dwarf mice
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Voss JW, Rosenfeld MG. Anterior pituitary development: short tales from dwarf mice. Cell. 70:1992;527-530.
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Voss, J.W.1
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6
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Rhodes SJ, DiMattia GE, Rosenfeld MG. Transcriptional mechanisms in anterior pituitary cell differentiation. Curr Opin Genet Dev. 4:1994;709-717.
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Rhodes, S.J.1
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0028126819
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Pit-1 determines cell types during development of the anterior pituitary gland
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Andersen B, Rosenfeld MG. Pit-1 determines cell types during development of the anterior pituitary gland. J Biol Chem. 269:1994;29335-29338.
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Andersen, B.1
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Fedtsova, N.G.1
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Rathke's pouch morphogenesis in the chick embryo
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Jacobson AG, Miyamoto DM, Mai S-H. Rathke's pouch morphogenesis in the chick embryo. J Exp Zool. 207:1979;351-366.
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Jacobson, A.G.1
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0025234605
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Mapping of the presumptive brain regions in the neural plate of Xenopus laevis
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Eagleson GW, Harris WA. Mapping of the presumptive brain regions in the neural plate of Xenopus laevis. J Neurobiol. 21:1990;427-440.
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Eagleson, G.W.1
Harris, W.A.2
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12
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0023687125
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The fate map of the cephalic neural primordium at the presomitic to the 3-somite stage in the avian embryo
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Couly G, Le Douarin NM. The fate map of the cephalic neural primordium at the presomitic to the 3-somite stage in the avian embryo. Development. 103:1988;101-113. (Suppl).
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Development
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Couly, G.1
Le Douarin, N.M.2
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13
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0028147035
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The contribution of both forebrain and midbrain crest cells to the mesenchyme in the frontonasal mass of mouse embryos
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Osumi-Yamashita N, Ninomiya Y, Doi H, Eto K. The contribution of both forebrain and midbrain crest cells to the mesenchyme in the frontonasal mass of mouse embryos. Dev Biol. 164:1994;409-419.
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Osumi-Yamashita, N.1
Ninomiya, Y.2
Doi, H.3
Eto, K.4
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14
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0029617682
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Six3, a murine homologue of the sine oculis gene, demarcates the most anterior border of the developing neural plate and is expressed during eye development
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of special interest. This paper describes the cloning of Six3, one of the most anteriorly expressed homeobox genes reported to date. Its expression pattern during mouse development supports the idea that Rathke's pouch derives from the anterior neural ridge.
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Oliver G, Mailhos A, Wehr R, Copeland NG, Jenkins NA, Gruss P. Six3, a murine homologue of the sine oculis gene, demarcates the most anterior border of the developing neural plate and is expressed during eye development. of special interest Development. 121:1995;4045-4055 This paper describes the cloning of Six3, one of the most anteriorly expressed homeobox genes reported to date. Its expression pattern during mouse development supports the idea that Rathke's pouch derives from the anterior neural ridge.
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(1995)
Development
, vol.121
, pp. 4045-4055
-
-
Oliver, G.1
Mailhos, A.2
Wehr, R.3
Copeland, N.G.4
Jenkins, N.A.5
Gruss, P.6
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15
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0026340588
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Pax-6, a murine paired box gene, is expressed in the developing CNS
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Walther C, Gruss P. Pax-6, a murine paired box gene, is expressed in the developing CNS. Development. 113:1991;1435-1449.
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Development
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Walther, C.1
Gruss, P.2
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16
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23444441161
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Pax-6 is first expressed in a region of ectoderm anterior to the early neural plate: Implications for stepwise determination of the lens
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Li HS, Yang JM, Jacobson RD, Pasko D, Sundin O. Pax-6 is first expressed in a region of ectoderm anterior to the early neural plate: implications for stepwise determination of the lens. Dev Biol. 162:1994;181-194.
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Dev Biol
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Li, H.S.1
Yang, J.M.2
Jacobson, R.D.3
Pasko, D.4
Sundin, O.5
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17
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0028904766
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Homeobox genes and connective tissue patterning
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Oliver G, Wehr R, Jenkins NA, Copeland NG, Cheyette BN, Hartenstein V, Zipursky SL, Gruss P. Homeobox genes and connective tissue patterning. Development. 121:1995;693-705.
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Development
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Oliver, G.1
Wehr, R.2
Jenkins, N.A.3
Copeland, N.G.4
Cheyette, B.N.5
Hartenstein, V.6
Zipursky, S.L.7
Gruss, P.8
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18
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0030068242
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Rpx: A novel anterior-restricted homebox gene progressively activated in the prechordal plate, anterior neural plate and Rathke's pouch of the mouse embryo
-
of special interest. The authors report the cloning of Rpx, a homeobox gene which becomes restricted to Rathke's pouch (the primordium of the pituitary), suggesting that it may be involved in the determination of the pituitary gland. Downregulation of Rpx gene expression in the pouch coincides with the differentiation of pituitary-specific cell types.
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Hermesz E, Mackem S, Mahon KA. Rpx: a novel anterior-restricted homebox gene progressively activated in the prechordal plate, anterior neural plate and Rathke's pouch of the mouse embryo. of special interest Development. 122:1996;41-52 The authors report the cloning of Rpx, a homeobox gene which becomes restricted to Rathke's pouch (the primordium of the pituitary), suggesting that it may be involved in the determination of the pituitary gland. Downregulation of Rpx gene expression in the pouch coincides with the differentiation of pituitary-specific cell types.
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(1996)
Development
, vol.122
, pp. 41-52
-
-
Hermesz, E.1
Mackem, S.2
Mahon, K.A.3
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19
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0028908976
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Sequence, genomic organisation, and expression of the novel homeobox gene Hesx1
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Thomas PQ, Johnson BV, Rathjen J, Rathjen PD. Sequence, genomic organisation, and expression of the novel homeobox gene Hesx1. J Biol Chem. 270:1995;3869-3875.
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J Biol Chem
, vol.270
, pp. 3869-3875
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Thomas, P.Q.1
Johnson, B.V.2
Rathjen, J.3
Rathjen, P.D.4
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20
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0028825890
-
Initiation of anterior head-specific gene expression in uncommitted ectoderm of Xenopus laevis by ammonium chloride
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Mathers PH, Miller A, Doniach T, Dirksen M-L, Jamrich M. Initiation of anterior head-specific gene expression in uncommitted ectoderm of Xenopus laevis by ammonium chloride. Dev Biol. 171:1995;641-654.
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Dev Biol
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Mathers, P.H.1
Miller, A.2
Doniach, T.3
Dirksen, M.-L.4
Jamrich, M.5
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21
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0029024046
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Distinct expression and shared activities of members of the hedgehog gene family of Xenopus laevis
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Ekker SC, McGrew LL, Lai C-J, Lee JL, Von Kessler DP, Moon RT, Beachy PA. Distinct expression and shared activities of members of the hedgehog gene family of Xenopus laevis. Development. 121:1995;2337-2347.
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Development
, vol.121
, pp. 2337-2347
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Ekker, S.C.1
McGrew, L.L.2
Lai, C.-J.3
Lee, J.L.4
Von Kessler, D.P.5
Moon, R.T.6
Beachy, P.A.7
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22
-
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0027531924
-
Proopiomelanocortin gene expression as a neural marker during the embryonic development of Xenopus laevis
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Heideveld M, Ayoubi TAY, Van de Wiel MHJ, Martens GJM, Durston AJ. Proopiomelanocortin gene expression as a neural marker during the embryonic development of Xenopus laevis. Differentiation. 52:1993;195-200.
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Differentiation
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Heideveld, M.1
Ayoubi, T.A.Y.2
Van De Wiel, M.H.J.3
Martens, G.J.M.4
Durston, A.J.5
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23
-
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0029028990
-
Patterning of the neural ectoderm of Xenopus laevis by the amino-terminal product of hedgehog autoproteolytic cleavage
-
of special interest. The paper demonstrates that Hedgehog can directly induce and elevate the expression of anterior neural genes, suggesting a role in anterio-posterior patterning. One of the markers that is induced is XANF-2, Xenopus homolog of Rpx.
-
Lai C-J, Ekker SC, Beachy PA, Moon RT. Patterning of the neural ectoderm of Xenopus laevis by the amino-terminal product of hedgehog autoproteolytic cleavage. of special interest Development. 121:1995;2349-2360 The paper demonstrates that Hedgehog can directly induce and elevate the expression of anterior neural genes, suggesting a role in anterio-posterior patterning. One of the markers that is induced is XANF-2, Xenopus homolog of Rpx.
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(1995)
Development
, vol.121
, pp. 2349-2360
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Lai, C.-J.1
Ekker, S.C.2
Beachy, P.A.3
Moon, R.T.4
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24
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0028929541
-
Expression pattern of the murine LIM class homeobox gene Lhx3 in subsets of neural and neuroendocrine tissues
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Zhadanov AB, Bertuzzi S, Taira M, Dawid IB, Westphal H. Expression pattern of the murine LIM class homeobox gene Lhx3 in subsets of neural and neuroendocrine tissues. Dev Dyn. 202:1995;354-364.
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Dev Dyn
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Zhadanov, A.B.1
Bertuzzi, S.2
Taira, M.3
Dawid, I.B.4
Westphal, H.5
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25
-
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0028965157
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P-Lim, a LIM homeodomain factor, is expressed during pituitary organ and cell commitment and synergizes with Pit-1
-
Bach I, Rhodes SJ, Pearse RV II, Heinzel T, Gloss B, Scully KM, Sawchenko PE, Rosenfeld MG. P-Lim, a LIM homeodomain factor, is expressed during pituitary organ and cell commitment and synergizes with Pit-1. Proc Natl Acad Sci USA. 92:1995;2720-2724.
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(1995)
Proc Natl Acad Sci USA
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, pp. 2720-2724
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Bach, I.1
Rhodes, S.J.2
Pearse R.V. II3
Heinzel, T.4
Gloss, B.5
Scully, K.M.6
Sawchenko, P.E.7
Rosenfeld, M.G.8
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26
-
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0028558774
-
The mouse homeoprotein mLIM-3 is expressed early in cells derived from the neuroepithelium and persists in adult pituitary
-
Seidah NG, Barale J-C, Marcinkiewicz M, Mattei M-G, Day R, Chrétien M. The mouse homeoprotein mLIM-3 is expressed early in cells derived from the neuroepithelium and persists in adult pituitary. DNA Cell Biol. 13:1994;1163-1180.
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DNA Cell Biol
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Seidah, N.G.1
Barale, J.-C.2
Marcinkiewicz, M.3
Mattei, M.-G.4
Day, R.5
Chrétien, M.6
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27
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0027449434
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Expression of LIM class homeobox gene Xlim-3 in Xenopus development is limited to neural and neuroendocrine tissues
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Taira M, Hayes WP, Otani H, Dawid IB. Expression of LIM class homeobox gene Xlim-3 in Xenopus development is limited to neural and neuroendocrine tissues. Dev Biol. 159:1993;245-256.
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(1993)
Dev Biol
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Taira, M.1
Hayes, W.P.2
Otani, H.3
Dawid, I.B.4
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28
-
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9344229266
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Specification of pituitary cell lineages by the LIM homeobox gene Lhx3
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of outstanding interest. The authors describe the phenotype of mice homozygous for a mutation in the LIM homeobox gene Lhx3. In these animals, Rathke's pouch forms but fails to grow and differentiate; therefore, the mice lack both the anterior and the intermediate lobes of the pituitary gland. The determination of all the pituitary cell lineages, except the corticotropes, is affected.
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Sheng HZ, Zhadanov AB, Mosinger B Jr, Fujii T, Bertuzzi S, Grinberg A, Lee EJ, Huang S-P, Mahon KA, Westphal H. Specification of pituitary cell lineages by the LIM homeobox gene Lhx3. of outstanding interest Science. 272:1996;1004-1007 The authors describe the phenotype of mice homozygous for a mutation in the LIM homeobox gene Lhx3. In these animals, Rathke's pouch forms but fails to grow and differentiate; therefore, the mice lack both the anterior and the intermediate lobes of the pituitary gland. The determination of all the pituitary cell lineages, except the corticotropes, is affected.
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(1996)
Science
, vol.272
, pp. 1004-1007
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-
Sheng, H.Z.1
Zhadanov, A.B.2
Mosinger B., Jr.3
Fujii, T.4
Bertuzzi, S.5
Grinberg, A.6
Lee, E.J.7
Huang, S.-P.8
Mahon, K.A.9
Westphal, H.10
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29
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0028203766
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Activation of the glycoprotein hormone α-subunit promoter by a LIM-homeodomain transcription factor
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Roberson MS, Schoderbek WE, Tremml G, Maurer RA. Activation of the glycoprotein hormone α-subunit promoter by a LIM-homeodomain transcription factor. Mol Cell Biol. 14:1994;2985-2993.
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Mol Cell Biol
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, pp. 2985-2993
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Roberson, M.S.1
Schoderbek, W.E.2
Tremml, G.3
Maurer, R.A.4
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30
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0028835348
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Presence of isl-1-related LIM domain homeobox genes in teleost and their similar patterns of expression in brain and spinal cord
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Gong Z, Hui C-C, Hew CL. Presence of isl-1-related LIM domain homeobox genes in teleost and their similar patterns of expression in brain and spinal cord. J Biol Chem. 270:1995;3335-3345.
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J Biol Chem
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, pp. 3335-3345
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Gong, Z.1
Hui, C.-C.2
Hew, C.L.3
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31
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0028580180
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Topographic organization of embryonic motor neurons defined by expression of LIM homeobox genes
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Tsuchida T, Ensini M, Morton SB, Baldassare M, Edlund T, Jessell TM, Pfaff SL. Topographic organization of embryonic motor neurons defined by expression of LIM homeobox genes. Cell. 79:1994;957-970.
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Cell
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Tsuchida, T.1
Ensini, M.2
Morton, S.B.3
Baldassare, M.4
Edlund, T.5
Jessell, T.M.6
Pfaff, S.L.7
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32
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0029939460
-
Ptx-1, a bicoid-related homeobox transcription factor involved in transcription of the pro-opiomelanocortin gene
-
of special interest. This paper, together with [33], describes the cloning of a homeobox gene that is highly expressed in Rathke's pouch and which possesses a homeodomain that is most closely related to those of the anterior-specific genes bicoid and orthodenticle in Drosophila and Otx-1 and Otx-2 in mammals.
-
Lamonerie T, Tremblay JJ, Lanctot C, Therrien M, Gauthier Y, Drouin J. Ptx-1, a bicoid-related homeobox transcription factor involved in transcription of the pro-opiomelanocortin gene. of special interest Genes Dev. 10:1996;1284-1295 This paper, together with [33], describes the cloning of a homeobox gene that is highly expressed in Rathke's pouch and which possesses a homeodomain that is most closely related to those of the anterior-specific genes bicoid and orthodenticle in Drosophila and Otx-1 and Otx-2 in mammals.
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(1996)
Genes Dev
, vol.10
, pp. 1284-1295
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-
Lamonerie, T.1
Tremblay, J.J.2
Lanctot, C.3
Therrien, M.4
Gauthier, Y.5
Drouin, J.6
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33
-
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0029821237
-
P-OTX: A Pit-1 interacting homeodomain factor expressed during anterior pituitary gland development
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of special interest. See annotation [32].
-
Szeto DP, Ryan AK, OConnell SM, Rosenfeld MG. P-OTX: a Pit-1 interacting homeodomain factor expressed during anterior pituitary gland development. of special interest Proc Natl Acad Sci USA. 93:1996;7706-7710 See annotation [32].
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(1996)
Proc Natl Acad Sci USA
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, pp. 7706-7710
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Szeto, D.P.1
Ryan, A.K.2
OConnell, S.M.3
Rosenfeld, M.G.4
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34
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0026665062
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Steroidogenic factor 1, a key regulator of steridogenic enzyme expression, is the mouse homolog of fushi tarazu-factor 1
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Lala DS, Rice DA, Parker KL. Steroidogenic factor 1, a key regulator of steridogenic enzyme expression, is the mouse homolog of fushi tarazu-factor 1. Mol Endocrinol. 6:1992;1249-1258.
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Mol Endocrinol
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Lala, D.S.1
Rice, D.A.2
Parker, K.L.3
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35
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0027076516
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Pit-1-dependent expression of the receptor for growth hormone releasing factor mediates pituitary cell growth
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Lin C, Lin S-C, Chang C-P, Rosenfeld MG. Pit-1-dependent expression of the receptor for growth hormone releasing factor mediates pituitary cell growth. Nature. 360:1992;765-768.
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(1992)
Nature
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, pp. 765-768
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Lin, C.1
Lin, S.-C.2
Chang, C.-P.3
Rosenfeld, M.G.4
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36
-
-
0025014024
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Dwarf locus mutants, which lack three pituitary cell types, result from mutations in the POU domain gene, Pit-1
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Li S, Crenshaw EBI, Rawson EJ, Simmons DM, Swanson LW, Rosenfeld MG. Dwarf locus mutants, which lack three pituitary cell types, result from mutations in the POU domain gene, Pit-1. Nature. 347:1990;528-533.
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(1990)
Nature
, vol.347
, pp. 528-533
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Li, S.1
Crenshaw, E.B.I.2
Rawson, E.J.3
Simmons, D.M.4
Swanson, L.W.5
Rosenfeld, M.G.6
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37
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0025885764
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Localization of the panhypopituitary dwarf mutation (df) on mouse chromosome 11 in an intersubspecific backcross
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Buckwalter M, Katz R, Camper S. Localization of the panhypopituitary dwarf mutation (df) on mouse chromosome 11 in an intersubspecific backcross. Genomics. 10:1991;515-526.
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(1991)
Genomics
, vol.10
, pp. 515-526
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Buckwalter, M.1
Katz, R.2
Camper, S.3
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38
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0013792214
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The response of two types of dwarf mice to growth hormone, thyrotropin, and thyroxine
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Bartke A. The response of two types of dwarf mice to growth hormone, thyrotropin, and thyroxine. Gen Comp Endocrinol. 5:1965;418-426.
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Gen Comp Endocrinol
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Bartke, A.1
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39
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0020617471
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Etiology of growth hormone deficiency in little, Ames, and Snell dwarf mice
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Cheng T, Beamer W, Phillips J, Bartke A, Mallonee R, Dowling C. Etiology of growth hormone deficiency in little, Ames, and Snell dwarf mice. Endocrinology. 113:1983;1669-1678.
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Endocrinology
, vol.113
, pp. 1669-1678
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Cheng, T.1
Beamer, W.2
Phillips, J.3
Bartke, A.4
Mallonee, R.5
Dowling, C.6
-
40
-
-
0029608970
-
The ames dwarf gene is required for Pit-1 gene activation
-
of special interest. This paper demonstrates that the initial activation of the Pit-1 gene is deficient in Ames dwarf animals, suggesting that the df factor acts upstream of Pit-1 in pituitary development.
-
Andersen B, Pearse RV II, Jenne K, Sornson M, Lin S-C, Bartke A, Rosenfeld MG. The ames dwarf gene is required for Pit-1 gene activation. of special interest Dev Biol. 172:1995;495-503 This paper demonstrates that the initial activation of the Pit-1 gene is deficient in Ames dwarf animals, suggesting that the df factor acts upstream of Pit-1 in pituitary development.
-
(1995)
Dev Biol
, vol.172
, pp. 495-503
-
-
Andersen, B.1
Pearse R.V. II2
Jenne, K.3
Sornson, M.4
Lin, S.-C.5
Bartke, A.6
Rosenfeld, M.G.7
-
41
-
-
0030025955
-
Anterior pituitary cells defective in the cell-autonomous factor, df, undergo cell lineage specification but not expansion
-
of special interest. Provides evidence that expression of Pit-1 and limited commitment of anterior pituitary cells occurs in Ames pituitaries. Therefore, it was suggested that df may play a crucial role in lineage-specific proliferation, rather than in cytodifferentiation. Furthermore, the use of chimeric mice demonstrates that df functions as a cell-autonomous factor.
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Holloway JM, Szeto DP, Scully KM, Glass CK, Rosenfeld MG. Pit-1 binding to specific DNA sites as a monomer or dimer determines gene-specific use of a tyrosine-dependent synergy domain. of special interest Genes Dev. 9:1995;1992-2006 This paper describes the finding that the sequence of specific DNA sites in the prolactin and growth hormone genes, respectively, dictates alternative Pit-1 synergy domain utilization based on monomeric or dimeric binding, suggesting an additional regulatory strategy for differential target gene activation in distinct cell types.
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of special interest. This paper reports the gene knockout for the common α subunit of the pituitary hormones TSH, LH and FSH. The homozygous mutant mice are hypogonadal and exhibit profound hypothyroidism resulting in dwarfism. The pituitary cells that produce the TSHβ subunit show a dramatic hypertrophy and hyperplasia as a result of the lack of thyroid function.
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Kendall SK, Samuelson LC, Saunders TL, Wood RI, Camper SA. Targeted disruption of the pituitary glycoprotein hormone α-subunit produces hypogonadal and hypothyroid mice. of special interest Genes Dev. 9:1995;2007-2019 This paper reports the gene knockout for the common α subunit of the pituitary hormones TSH, LH and FSH. The homozygous mutant mice are hypogonadal and exhibit profound hypothyroidism resulting in dwarfism. The pituitary cells that produce the TSHβ subunit show a dramatic hypertrophy and hyperplasia as a result of the lack of thyroid function.
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Development and survival of the endocrine hypothalamus and posterior pituitary gland requires the neuronal POU domain factor Brn-2
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of outstanding interest. This paper, together with [81], describes the phenotype of mice with a deletion of the Brn-2 genomic locus. Lack of Brn-2 results in loss of endocrine hypothalamic nuclei and the posterior pituitary gland. This finding demonstrates that the developmental program of the endocrine hypothalamus, like that of the anterior pituitary gland, seems, at least in part, to be directed by a POU domain transcription factor. This transcription factor is Brn-2 in the endocrine hypothalamus and Pit-1 in the anterior pituitary gland.
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Schonemann MD, Ryan AK, McEvilly RJ, O'Connell SM, Arias CA, Kalla KA, Li P, Sawchenko PE, Rosenfeld MG. Development and survival of the endocrine hypothalamus and posterior pituitary gland requires the neuronal POU domain factor Brn-2. of outstanding interest Genes Dev. 9:1995;3122-3135 This paper, together with [81], describes the phenotype of mice with a deletion of the Brn-2 genomic locus. Lack of Brn-2 results in loss of endocrine hypothalamic nuclei and the posterior pituitary gland. This finding demonstrates that the developmental program of the endocrine hypothalamus, like that of the anterior pituitary gland, seems, at least in part, to be directed by a POU domain transcription factor. This transcription factor is Brn-2 in the endocrine hypothalamus and Pit-1 in the anterior pituitary gland.
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(1995)
Genes Dev
, vol.9
, pp. 3122-3135
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Schonemann, M.D.1
Ryan, A.K.2
McEvilly, R.J.3
O'Connell, S.M.4
Arias, C.A.5
Kalla, K.A.6
Li, P.7
Sawchenko, P.E.8
Rosenfeld, M.G.9
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81
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The POU domain transcription factor Brn-2 is required for the determination of specific neuronal lineages in the hypothalamus of the mouse
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of outstanding interest. See annotation [80].
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Nakai S, Kawano H, Yudate T, Nishi M, Kuno J, Nagata A, Jishage K, Hamada H, Fujii H, Kawamura K. The POU domain transcription factor Brn-2 is required for the determination of specific neuronal lineages in the hypothalamus of the mouse. of outstanding interest Genes Dev. 9:1995;3109-3121 See annotation [80].
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(1995)
Genes Dev
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Nakai, S.1
Kawano, H.2
Yudate, T.3
Nishi, M.4
Kuno, J.5
Nagata, A.6
Jishage, K.7
Hamada, H.8
Fujii, H.9
Kawamura, K.10
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82
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Pituitary ontogeny of the Snell dwarf mouse reveals Pit-1-independent and Pit-1-dependent origins of the thyrotrope
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Lin S-C, Li S, Drolet DW, Rosenfeld MG. Pituitary ontogeny of the Snell dwarf mouse reveals Pit-1-independent and Pit-1-dependent origins of the thyrotrope. Development. 120:1994;515-522.
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(1994)
Development
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Lin, S.-C.1
Li, S.2
Drolet, D.W.3
Rosenfeld, M.G.4
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