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2
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0027066831
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In search of molecular origins of cellular differentiation in Volvox and its relatives
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Schmitt R, Fabry S, Kirk DL: In search of molecular origins of cellular differentiation in Volvox and its relatives. Int Rev Cytol 1992, 139:189-265.
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(1992)
Int Rev Cytol
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Schmitt, R.1
Fabry, S.2
Kirk, D.L.3
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3
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0024220124
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cDNA and deduced amino acid sequences of cytochrome c from Chlamydomonas reinhardtii: Unexpected functional and phylogenetic implications
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Amati BB, Goldschmidt-Clermont M, Wallace CJ, Rochaix JD: cDNA and deduced amino acid sequences of cytochrome c from Chlamydomonas reinhardtii: unexpected functional and phylogenetic implications. J Mol Evol 1988, 28:151-160.
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4
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0024727958
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Phylogenetic relationships of the green alga Volvox carteri deduced from small-subunit ribosomal RNA comparisons
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Rausch H, Larsen N, Schmitt R: Phylogenetic relationships of the green alga Volvox carteri deduced from small-subunit ribosomal RNA comparisons. J Mol Evol 1989, 29:255-265.
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(1989)
J Mol Evol
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Rausch, H.1
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Schmitt, R.3
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5
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0026779754
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The nitrate reductase-encoding gene of Volvox carteri: Map location, sequence and induction kinetics
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Gruber H, Goetinck SD, Kirk DL, Schmitt R: The nitrate reductase-encoding gene of Volvox carteri: map location, sequence and induction kinetics, Gene 1992, 120:75-83.
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(1992)
Gene
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Gruber, H.1
Goetinck, S.D.2
Kirk, D.L.3
Schmitt, R.4
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6
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0030130398
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Expression of the Volvox gene encoding nitrate reductase: Mutation-dependent activation of cryptic splice sites and intron-enhanced gene expression from a cDNA
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Gruber H, Kirzinger SH, Schmitt R: Expression of the Volvox gene encoding nitrate reductase: mutation-dependent activation of cryptic splice sites and intron-enhanced gene expression from a cDNA. Plant Mol Biol 1996, 31:1-12.
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(1996)
Plant Mol Biol
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Gruber, H.1
Kirzinger, S.H.2
Schmitt, R.3
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7
-
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0033024780
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Genetic engineering of the multicellular green alga Volvox: A modified and multiplied bacterial antibiotic resistance gene as a dominant selectable marker
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Hallmann A, Rappel A: Genetic engineering of the multicellular green alga Volvox: a modified and multiplied bacterial antibiotic resistance gene as a dominant selectable marker. Plant J 1999, 17:99-109.
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Plant J
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Hallmann, A.1
Rappel, A.2
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8
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0028362210
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Nuclear transformation of Volvox carteri
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Schiedlmeier B, Schmitt R, Müller W, Kirk MM, Gruber H, Mages W, Kirk DL: Nuclear transformation of Volvox carteri. Proc Natl Acad Sci USA 1994, 91:5080-5084.
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(1994)
Proc Natl Acad Sci USA
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Schiedlmeier, B.1
Schmitt, R.2
Müller, W.3
Kirk, M.M.4
Gruber, H.5
Mages, W.6
Kirk, D.L.7
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9
-
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0027668772
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Jordan, an active Volvox transposable element similar to higher plant transposons
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Miller SM, Schmitt R, Kirk DL: Jordan, an active Volvox transposable element similar to higher plant transposons. Plant Cell 1993, 5:1125-1138.
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(1993)
Plant Cell
, vol.5
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Miller, S.M.1
Schmitt, R.2
Kirk, D.L.3
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10
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0027960433
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Reporter genes and highly regulated promoters as tools for transformation experiments in Volvox carteri
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Hallmann A, Sumper M: Reporter genes and highly regulated promoters as tools for transformation experiments in Volvox carteri. Proc Natl Acad Sci USA 1994, 91:11562-11566.
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(1994)
Proc Natl Acad Sci USA
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Hallmann, A.1
Sumper, M.2
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12
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0027517453
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The relationship between cell size and cell fate in Volvox carteri
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Kirk MM, Ransick A, McRae SE, Kirk DL: The relationship between cell size and cell fate in Volvox carteri. J Cell Biol 1993, 123:191-208.
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(1993)
J Cell Biol
, vol.123
, pp. 191-208
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Kirk, M.M.1
Ransick, A.2
McRae, S.E.3
Kirk, D.L.4
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13
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25944435147
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Asymmetric division, cell size and germ-soma specification in Volvox
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Edited by Kirk DL. London, UK: Academic Press
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Kirk DL: Asymmetric division, cell size and germ-soma specification in Volvox. In Seminars in Developmental Biology, vol 6-5. Edited by Kirk DL. London, UK: Academic Press; 1995:369-379.
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(1995)
Seminars in Developmental Biology
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Kirk, D.L.1
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14
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0038005358
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InvA, a novel kinesin, plays an essential role in Volvox morphogenesis
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Nishii I, Ogihara S, Kirk DL: InvA, a novel kinesin, plays an essential role in Volvox morphogenesis. Cell 2003, 113:743-753. Volvox (sometimes considered a 'green animal') undergoes a gastrulation-like inversion at the end of embryogenesis. The authors show that a new type of kinesin is required to drive inversion to completion; they propose an interesting molecular model of the cellular process that may also be useful as a pattern for the more complex process of gastrulation in animals.
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(2003)
Cell
, vol.113
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Nishii, I.1
Ogihara, S.2
Kirk, D.L.3
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15
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0032972515
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Actomyosin contraction of the posterior hemisphere is required for inversion of the Volvox embryo
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Nishii I, Ogihara S: Actomyosin contraction of the posterior hemisphere is required for inversion of the Volvox embryo. Development 1999, 126:2117-2127.
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(1999)
Development
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Nishii, I.1
Ogihara, S.2
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16
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0035169751
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Volvox carteri as a model for studying the genetic and cytological control of morphogenesis
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Kirk DL, Nishii I: Volvox carteri as a model for studying the genetic and cytological control of morphogenesis. Dev Growth Differ 2001, 43:621-631.
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(2001)
Dev Growth Differ
, vol.43
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Kirk, D.L.1
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17
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0041566921
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Developmental biology: How to turn inside out
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Schmitt R, Sumper M: Developmental biology: how to turn inside out. Nature 2003, 424:499-500.
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Nature
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0031889952
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Biochemistry of the extracellular matrix of Volvox
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Sumper M, Hallmann A: Biochemistry of the extracellular matrix of Volvox. Int Rev Cytol 1998, 180:51-85.
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(1998)
Int Rev Cytol
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Sumper, M.1
Hallmann, A.2
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19
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0034496263
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The developmentally regulated ECM glycoprotein ISG plays an essential role in organizing the ECM and orienting the cells of Volvox
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Hallmann A, Kirk DL: The developmentally regulated ECM glycoprotein ISG plays an essential role in organizing the ECM and orienting the cells of Volvox. J Cell Sci 2000, 113:4605-4617.
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(2000)
J Cell Sci
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Hallmann, A.1
Kirk, D.L.2
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20
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0032423865
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Quantitative PCR data falsify the chromosomal endoreduplication hypothesis for Volvox carteri (Volvocales, Chlorophyta)
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Kobl I, Kirk DL, Schmitt R: Quantitative PCR data falsify the chromosomal endoreduplication hypothesis for Volvox carteri (Volvocales, Chlorophyta). J Phycol 1998, 34:981-988.
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(1998)
J Phycol
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Kobl, I.1
Kirk, D.L.2
Schmitt, R.3
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21
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0026268030
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Genetic and cytological control of the asymmetric divisions that pattern the Volvox embryo
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Kirk DL, Kaufman MR, Keeling RM, Stamer KA: Genetic and cytological control of the asymmetric divisions that pattern the Volvox embryo. Development (Suppl I) 1991:67-82.
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(1991)
Development (Suppl I)
, pp. 67-82
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Kirk, D.L.1
Kaufman, M.R.2
Keeling, R.M.3
Stamer, K.A.4
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22
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0025847136
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The program for cellular differentiation in Volvox carteri as revealed by molecular analysis of development in a gonidialess/somatic regenerator mutant
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Tam LW, Kirk DL: The program for cellular differentiation in Volvox carteri as revealed by molecular analysis of development in a gonidialess/somatic regenerator mutant. Development 1991, 112:571-580.
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(1991)
Development
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Tam, L.W.1
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0035887071
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Germ-soma differentiation in Volvox
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Kirk DL: Germ-soma differentiation in Volvox. Dev Biol 2001, 238:213-223.
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(2001)
Dev Biol
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Kirk, D.L.1
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24
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0035998868
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Genetic control of germ-soma differentiation in Volvox carteri
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Stark K, Schmitt R: Genetic control of germ-soma differentiation in Volvox carteri. Protist 2002, 153:99-107. This is a brief review of what is known to date about the molecular controls that govern germ-soma differentiation in Volvox carteri.
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Protist
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Stark, K.1
Schmitt, R.2
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25
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0033046808
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glsA, a Volvox gene required for asymmetric division and germ cell specification, encodes a chaperone-like protein
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Miller SM, Kirk DL: glsA, a Volvox gene required for asymmetric division and germ cell specification, encodes a chaperone-like protein. Development 1999, 126:649-658.
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(1999)
Development
, vol.126
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Miller, S.M.1
Kirk, D.L.2
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26
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0032970065
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regA, a Volvox gene that plays a central role in germ-soma differentiation, encodes a novel regulatory protein
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Kirk MM, Stark K, Miller SM, Müller W, Taillon BE, Gruber H, Schmitt R, Kirk DL: regA, a Volvox gene that plays a central role in germ-soma differentiation, encodes a novel regulatory protein. Development 1999, 126:639-647.
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(1999)
Development
, vol.126
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Kirk, M.M.1
Stark, K.2
Miller, S.M.3
Müller, W.4
Taillon, B.E.5
Gruber, H.6
Schmitt, R.7
Kirk, D.L.8
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27
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0025876758
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Identification of cell-type-specific genes of Volvox carteri and characterization of their expression during the asexual life cycle
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Tam LW, Kirk DL: Identification of cell-type-specific genes of Volvox carteri and characterization of their expression during the asexual life cycle. Dev Biol 1991, 145:51-66.
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(1991)
Dev Biol
, vol.145
, pp. 51-66
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Tam, L.W.1
Kirk, D.L.2
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28
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0029800951
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Three abundant germ line-specific transcripts in Volvox carteri encode photosynthetic proteins
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Choi G, Przybylska M, Straus D: Three abundant germ line-specific transcripts in Volvox carteri encode photosynthetic proteins. Curr Genet 1996, 30:347-355.
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Curr Genet
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Choi, G.1
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29
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0033390555
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Volvox germline-specific genes that are putative targets of RegA repression encode chloroplast proteins
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Meissner M, Stark K, Cresnar B, Kirk DL, Schmitt R: Volvox germline-specific genes that are putative targets of RegA repression encode chloroplast proteins. Curr Genet 1999, 36:363-370.
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(1999)
Curr Genet
, vol.36
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Meissner, M.1
Stark, K.2
Cresnar, B.3
Kirk, D.L.4
Schmitt, R.5
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30
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0034595810
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A new subunit of cytochrome b6f complex undergoes reversible phosphorylation upon state transition
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Hamel P, Olive J, Pierre Y, Wollman FA, de Vitry C: A new subunit of cytochrome b6f complex undergoes reversible phosphorylation upon state transition. J Biol Chem 2000, 275:17072-17079.
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J Biol Chem
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Hamel, P.1
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31
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0034965160
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Two enhancers and one silencer as located in the introns of rega control somatic cell differentiation in Volvox carteri
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Stark K, Kirk DL, Schmitt R: Two enhancers and one silencer as located in the introns of rega control somatic cell differentiation in Volvox carteri. Genes Dev 2001, 15:1449-1460. The rega gene [20] is transcribed in somatic, but not germline, cells. What controls the regulator gene? Deletion and complementation analyses provide evidence to show that two enhancers located in introns 3 and 5 of rega propagate its transcription in somatic cells, and that a dominant silencer located in intron 7 blocks transcription in embryos and gonidia.
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(2001)
Genes Dev
, vol.15
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Stark, K.1
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0032168678
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CpG methylation, chromatin structure and gene silencing-a three-way connection
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Razin A: CpG methylation, chromatin structure and gene silencing-a three-way connection. EMBO J 1998, 17:4905-4908.
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0035869224
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A link between DNA methylation and epigenetic silencing in transgenic Volvox carteri
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Babinger P, Kobl I, Mages W, Schmitt R: A link between DNA methylation and epigenetic silencing in transgenic Volvox carteri. Nucleic Acids Res 2001, 29:1261-1271. A common problem of Volvox nuclear transformation experiments is the lack of foreign gene expression. This silencing effect has been attributed to the methylation of cytosines in CpG dinucleotides throughout the foreign DNA. Transforming DNA integrates into random chromosomal loci as multiple tandem repeats, probably derived from circular concatenates formed prior to insertion into the genome.
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(2001)
Nucleic Acids Res
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Babinger, P.1
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Malaria. Cooperative silencing elements in var genes
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Deitsch KW, Calderwood MS, Wellems TE: Malaria. Cooperative silencing elements in var genes. Nature 2001, 412:875-876.
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Nature
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Deitsch, K.W.1
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0034122096
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Set domain-dependent regulation of transcriptional silencing and growth control by SUV39H1, a mammalian ortholog of Drosophila Su(var)3-9
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Firestein R, Cui X, Huie P, Cleary ML: Set domain-dependent regulation of transcriptional silencing and growth control by SUV39H1, a mammalian ortholog of Drosophila Su(var)3-9. Mol Cell Biol 2000, 20:4900-4909.
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Mol Cell Biol
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Firestein, R.1
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