-
1
-
-
58149295717
-
Protein arginine methylation in mammals: who, what, and why
-
Bedford MT, Clarke SG. Protein arginine methylation in mammals: who, what, and why. Mol Cell 2009;33:1-13.
-
(2009)
Mol Cell
, vol.33
, pp. 1-13
-
-
Bedford, M.T.1
Clarke, S.G.2
-
2
-
-
84871712509
-
Protein arginine methyltransferases and cancer
-
Yang Y, Bedford MT. Protein arginine methyltransferases and cancer. Nat Rev Cancer 2013;13:37-50.
-
(2013)
Nat Rev Cancer
, vol.13
, pp. 37-50
-
-
Yang, Y.1
Bedford, M.T.2
-
3
-
-
79958013243
-
Histone H4 acetylation differentially modulates arginine methylation by an in Cis mechanism
-
Feng Y, Wang J, Asher S, Hoang L, Guardiani C, Ivanov I, Zheng YG. Histone H4 acetylation differentially modulates arginine methylation by an in Cis mechanism. J Biol Chem 2011;286:20323-34.
-
(2011)
J Biol Chem
, vol.286
, pp. 20323-20334
-
-
Feng, Y.1
Wang, J.2
Asher, S.3
Hoang, L.4
Guardiani, C.5
Ivanov, I.6
Zheng, Y.G.7
-
4
-
-
33750342491
-
Signaling within a coactivator complex: methylation of SRC-3/AIB1 is a molecular switch for complex disassembly
-
Feng Q, Yi P, Wong J, O'Malley BW. Signaling within a coactivator complex: methylation of SRC-3/AIB1 is a molecular switch for complex disassembly. Mol Cell Biol 2006; 26:7846-57.
-
(2006)
Mol Cell Biol
, vol.26
, pp. 7846-7857
-
-
Feng, Q.1
Yi, P.2
Wong, J.3
O'Malley, B.W.4
-
5
-
-
33846001366
-
The arginine methyltransferase CARM1 regulates the coupling of transcription and mRNA processing
-
Cheng D, Cote J, Shaaban S, Bedford MT. The arginine methyltransferase CARM1 regulates the coupling of transcription and mRNA processing. Mol Cell 2007;25:71-83.
-
(2007)
Mol Cell
, vol.25
, pp. 71-83
-
-
Cheng, D.1
Cote, J.2
Shaaban, S.3
Bedford, M.T.4
-
6
-
-
43049084803
-
The histone-binding protein COPR5 is required for nuclear functions of the protein arginine methyltransferase PRMT5
-
Lacroix M, El Messaoudi S, Rodier G, Le Cam A, Sardet C, Fabbrizio E. The histone-binding protein COPR5 is required for nuclear functions of the protein arginine methyltransferase PRMT5. EMBO Rep 2008;9:452-8.
-
(2008)
EMBO Rep
, vol.9
, pp. 452-458
-
-
Lacroix, M.1
El Messaoudi, S.2
Rodier, G.3
Le Cam, A.4
Sardet, C.5
Fabbrizio, E.6
-
7
-
-
33845801596
-
The protein arginine methyltransferase Prmt5 is required for myogenesis because it facilitates ATP-dependent chromatin remodeling
-
Dacwag CS, Ohkawa Y, Pal S, Sif S, Imbalzano AN. The protein arginine methyltransferase Prmt5 is required for myogenesis because it facilitates ATP-dependent chromatin remodeling. Mol Cell Biol 2007;27:384-94.
-
(2007)
Mol Cell Biol
, vol.27
, pp. 384-394
-
-
Dacwag, C.S.1
Ohkawa, Y.2
Pal, S.3
Sif, S.4
Imbalzano, A.N.5
-
8
-
-
19544379490
-
Arginine methylation regulates IL-2 gene expression: a role for protein arginine methyltransferase 5 (PRMT5)
-
Richard S, Morel M, Cleroux P. Arginine methylation regulates IL-2 gene expression: a role for protein arginine methyltransferase 5 (PRMT5). Biochem J 2005;388(Pt 1):379-86.
-
(2005)
Biochem J
, vol.388
, pp. 379-386
-
-
Richard, S.1
Morel, M.2
Cleroux, P.3
-
9
-
-
0034677814
-
PRMT1 is the predominant type I protein arginine methyltransferase in mammalian cells
-
Tang J, Frankel A, Cook RJ, Kim S, Paik WK, Williams KR, Clarke S, Herschman HR. PRMT1 is the predominant type I protein arginine methyltransferase in mammalian cells. J Biol Chem 2000;275:7723-30.
-
(2000)
J Biol Chem
, vol.275
, pp. 7723-7730
-
-
Tang, J.1
Frankel, A.2
Cook, R.J.3
Kim, S.4
Paik, W.K.5
Williams, K.R.6
Clarke, S.7
Herschman, H.R.8
-
10
-
-
40349113414
-
Methylation of RUNX1 by PRMT1 abrogates SIN3A binding and potentiates its transcriptional activity
-
Zhao X, Jankovic V, Gural A, Huang G, Pardanani A, Menendez S, Zhang J, Dunne R, Xiao A, Erdjument-Bromage H, Allis CD, Tempst P, Nimer SD. Methylation of RUNX1 by PRMT1 abrogates SIN3A binding and potentiates its transcriptional activity. Genes Dev 2008;22:640-53.
-
(2008)
Genes Dev
, vol.22
, pp. 640-653
-
-
Zhao, X.1
Jankovic, V.2
Gural, A.3
Huang, G.4
Pardanani, A.5
Menendez, S.6
Zhang, J.7
Dunne, R.8
Xiao, A.9
Erdjument-Bromage, H.10
Allis, C.D.11
Tempst, P.12
Nimer, S.D.13
-
11
-
-
0033595011
-
Protein kinase B/Akt-mediated phosphorylation promotes nuclear exclusion of the winged helix transcription factor FKHR1
-
Biggs WH 3rd, Meisenhelder J, Hunter T, Cavenee WK, Arden KC. Protein kinase B/Akt-mediated phosphorylation promotes nuclear exclusion of the winged helix transcription factor FKHR1. Proc Natl Acad Sci U S A 1999; 96:7421-6.
-
(1999)
Proc Natl Acad Sci U S A
, vol.96
, pp. 7421-7426
-
-
Biggs, W.H.1
Meisenhelder, J.2
Hunter, T.3
Cavenee, W.K.4
Arden, K.C.5
-
12
-
-
0033582929
-
Akt promotes cell survival by phosphorylating and inhibiting a Forkhead transcription factor
-
Brunet A, Bonni A, Zigmond MJ, Lin MZ, Juo P, Hu LS, Anderson MJ, Arden KC, Blenis J, Greenberg ME. Akt promotes cell survival by phosphorylating and inhibiting a Forkhead transcription factor. Cell 1999;96:857-68.
-
(1999)
Cell
, vol.96
, pp. 857-868
-
-
Brunet, A.1
Bonni, A.2
Zigmond, M.J.3
Lin, M.Z.4
Juo, P.5
Hu, L.S.6
Anderson, M.J.7
Arden, K.C.8
Blenis, J.9
Greenberg, M.E.10
-
13
-
-
0037237279
-
The forkhead transcription factor Foxo1 regulates adipocyte differentiation
-
Nakae J, Kitamura T, Kitamura Y, Biggs WH 3rd, Arden KC, Accili D. The forkhead transcription factor Foxo1 regulates adipocyte differentiation. Dev Cell 2003;4:119-29.
-
(2003)
Dev Cell
, vol.4
, pp. 119-129
-
-
Nakae, J.1
Kitamura, T.2
Kitamura, Y.3
Biggs, W.H.4
Arden, K.C.5
Accili, D.6
-
14
-
-
53949087832
-
Arginine methylation of FOXO transcription factors inhibits their phosphorylation by Akt
-
Yamagata K, Daitoku H, Takahashi Y, Namiki K, Hisatake K, Kako K, Mukai H, Kasuya Y, Fukamizu A. Arginine methylation of FOXO transcription factors inhibits their phosphorylation by Akt. Mol Cell 2008;32:221-31.
-
(2008)
Mol Cell
, vol.32
, pp. 221-231
-
-
Yamagata, K.1
Daitoku, H.2
Takahashi, Y.3
Namiki, K.4
Hisatake, K.5
Kako, K.6
Mukai, H.7
Kasuya, Y.8
Fukamizu, A.9
-
15
-
-
0038187621
-
Insulin-regulated hepatic gluconeogenesis through FOXO1-PGC-1alpha interaction
-
Puigserver P, Rhee J, Donovan J, Walkey CJ, Yoon JC, Oriente F, Kitamura Y, Altomonte J, Dong H, Accili D, Spiegelman BM. Insulin-regulated hepatic gluconeogenesis through FOXO1-PGC-1alpha interaction. Nature 2003; 423:550-5.
-
(2003)
Nature
, vol.423
, pp. 550-555
-
-
Puigserver, P.1
Rhee, J.2
Donovan, J.3
Walkey, C.J.4
Yoon, J.C.5
Oriente, F.6
Kitamura, Y.7
Altomonte, J.8
Dong, H.9
Accili, D.10
Spiegelman, B.M.11
-
16
-
-
0032830572
-
Conservation of an insulin response unit between mouse and human glucose-6-phosphatase catalytic subunit gene promoters: transcription factor FKHR binds the insulin response sequence
-
Ayala JE, Streeper RS, Desgrosellier JS, Durham SK, Suwanichkul A, Svitek CA, Goldman JK, Barr FG, Powell DR, O'Brien RM. Conservation of an insulin response unit between mouse and human glucose-6-phosphatase catalytic subunit gene promoters: transcription factor FKHR binds the insulin response sequence. Diabetes 1999;48:1885-9.
-
(1999)
Diabetes
, vol.48
, pp. 1885-1889
-
-
Ayala, J.E.1
Streeper, R.S.2
Desgrosellier, J.S.3
Durham, S.K.4
Suwanichkul, A.5
Svitek, C.A.6
Goldman, J.K.7
Barr, F.G.8
Powell, D.R.9
O'Brien, R.M.10
-
17
-
-
34548349302
-
Impaired regulation of hepatic glucose production in mice lacking the forkhead transcription factor Foxo1 in liver
-
Matsumoto M, Pocai A, Rossetti L, Depinho RA, Accili D. Impaired regulation of hepatic glucose production in mice lacking the forkhead transcription factor Foxo1 in liver. Cell Metab 2007;6:208-16.
-
(2007)
Cell Metab
, vol.6
, pp. 208-216
-
-
Matsumoto, M.1
Pocai, A.2
Rossetti, L.3
Depinho, R.A.4
Accili, D.5
-
18
-
-
33744515637
-
FoxO1 regulates multiple metabolic pathways in the liver: effects on gluconeogenic, glycolytic, and lipogenic gene expression
-
Zhang W, Patil S, Chauhan B, Guo S, Powell DR, Le J, Klotsas A, Matika R, Xiao X, Franks R, Heidenreich KA, Sajan MP, Farese RV, Stolz DB, Tso P, Koo SH, Montminy M, Unterman TG. FoxO1 regulates multiple metabolic pathways in the liver: effects on gluconeogenic, glycolytic, and lipogenic gene expression. J Biol Chem 2006;281: 10105-17.
-
(2006)
J Biol Chem
, vol.281
, pp. 10105-10117
-
-
Zhang, W.1
Patil, S.2
Chauhan, B.3
Guo, S.4
Powell, D.R.5
Le, J.6
Klotsas, A.7
Matika, R.8
Xiao, X.9
Franks, R.10
Heidenreich, K.A.11
Sajan, M.P.12
Farese, R.V.13
Stolz, D.B.14
Tso, P.15
Koo, S.H.16
Montminy, M.17
Unterman, T.G.18
-
19
-
-
84867169367
-
Protein arginine methyltransferase 1 regulates hepatic glucose production in a FoxO1-dependent manner
-
Choi D, Oh KJ, Han HS, Yoon YS, Jung CY, Kim ST, Koo SH. Protein arginine methyltransferase 1 regulates hepatic glucose production in a FoxO1-dependent manner. Hepatology 2012;56:1546-56.
-
(2012)
Hepatology
, vol.56
, pp. 1546-1556
-
-
Choi, D.1
Oh, K.J.2
Han, H.S.3
Yoon, Y.S.4
Jung, C.Y.5
Kim, S.T.6
Koo, S.H.7
-
20
-
-
0033603396
-
Regulation of transcription by a protein methyltransferase
-
Chen D, Ma H, Hong H, Koh SS, Huang SM, Schurter BT, Aswad DW, Stallcup MR. Regulation of transcription by a protein methyltransferase. Science 1999;284:2174-7.
-
(1999)
Science
, vol.284
, pp. 2174-2177
-
-
Chen, D.1
Ma, H.2
Hong, H.3
Koh, S.S.4
Huang, S.M.5
Schurter, B.T.6
Aswad, D.W.7
Stallcup, M.R.8
-
21
-
-
20844450998
-
Arginine methylation an emerging regulator of protein function
-
Bedford MT, Richard S. Arginine methylation an emerging regulator of protein function. Mol Cell 2005;18:263-72.
-
(2005)
Mol Cell
, vol.18
, pp. 263-272
-
-
Bedford, M.T.1
Richard, S.2
-
22
-
-
79958066795
-
Methylation specifies distinct estrogen-induced binding site repertoires of CBP to chromatin
-
Ceschin DG, Walia M, Wenk SS, Duboe C, Gaudon C, Xiao Y, Fauquier L, Sankar M, Vandel L, Gronemeyer H. Methylation specifies distinct estrogen-induced binding site repertoires of CBP to chromatin. Genes Dev 2011;25:1132-46.
-
(2011)
Genes Dev
, vol.25
, pp. 1132-1146
-
-
Ceschin, D.G.1
Walia, M.2
Wenk, S.S.3
Duboe, C.4
Gaudon, C.5
Xiao, Y.6
Fauquier, L.7
Sankar, M.8
Vandel, L.9
Gronemeyer, H.10
-
23
-
-
0037107417
-
Control of CBP co-activating activity by arginine methylation
-
Chevillard-Briet M, Trouche D, Vandel L. Control of CBP co-activating activity by arginine methylation. EMBO J 2002;21:5457-66.
-
(2002)
EMBO J
, vol.21
, pp. 5457-5466
-
-
Chevillard-Briet, M.1
Trouche, D.2
Vandel, L.3
-
24
-
-
0037040245
-
The coactivator-associated arginine methyltransferase is necessary for muscle differentiation: CARM1 coactivates myocyte enhancer factor-2
-
Chen SL, Loffler KA, Chen D, Stallcup MR, Muscat GE. The coactivator-associated arginine methyltransferase is necessary for muscle differentiation: CARM1 coactivates myocyte enhancer factor-2. J Biol Chem 2002;277:4324-33.
-
(2002)
J Biol Chem
, vol.277
, pp. 4324-4333
-
-
Chen, S.L.1
Loffler, K.A.2
Chen, D.3
Stallcup, M.R.4
Muscat, G.E.5
-
25
-
-
33745673129
-
Coactivator-associated arginine methyltransferase-1 enhances nuclear factor-kappaB-mediated gene transcription through methylation of histone H3 at arginine 17
-
Miao F, Li S, Chavez V, Lanting L, Natarajan R. Coactivator-associated arginine methyltransferase-1 enhances nuclear factor-kappaB-mediated gene transcription through methylation of histone H3 at arginine 17. Mol Endocrinol 2006;20:1562-73.
-
(2006)
Mol Endocrinol
, vol.20
, pp. 1562-1573
-
-
Miao, F.1
Li, S.2
Chavez, V.3
Lanting, L.4
Natarajan, R.5
-
26
-
-
38949119371
-
CARM1 promotes adipocyte differentiation by coactivating PPARgamma
-
Yadav N, Cheng D, Richard S, Morel M, Iyer VR, Aldaz CM, Bedford MT. CARM1 promotes adipocyte differentiation by coactivating PPARgamma. EMBO Rep 2008;9: 193-8.
-
(2008)
EMBO Rep
, vol.9
, pp. 193-198
-
-
Yadav, N.1
Cheng, D.2
Richard, S.3
Morel, M.4
Iyer, V.R.5
Aldaz, C.M.6
Bedford, M.T.7
-
27
-
-
3042536209
-
Aberrant expression of CARM1, a transcriptional coactivator of androgen receptor, in the development of prostate carcinoma and androgen-independent status
-
Hong H, Kao C, Jeng MH, Eble JN, Koch MO, Gardner TA, Zhang S, Li L, Pan CX, Hu Z, MacLennan GT, Cheng L. Aberrant expression of CARM1, a transcriptional coactivator of androgen receptor, in the development of prostate carcinoma and androgen-independent status. Cancer 2004; 101:83-9.
-
(2004)
Cancer
, vol.101
, pp. 83-89
-
-
Hong, H.1
Kao, C.2
Jeng, M.H.3
Eble, J.N.4
Koch, M.O.5
Gardner, T.A.6
Zhang, S.7
Li, L.8
Pan, C.X.9
Hu, Z.10
MacLennan, G.T.11
Cheng, L.12
-
28
-
-
0348150716
-
Lipopolysaccharide-induced methylation of HuR, an mRNA-stabilizing protein, by CARM1. Coactivator-associated arginine methyltransferase
-
Li H, Park S, Kilburn B, Jelinek MA, Henschen-Edman A, Aswad DW, Stallcup MR, Laird-Offringa IA. Lipopolysaccharide-induced methylation of HuR, an mRNA-stabilizing protein, by CARM1. Coactivator-associated arginine methyltransferase. J Biol Chem 2002;277:44623-30.
-
(2002)
J Biol Chem
, vol.277
, pp. 44623-44630
-
-
Li, H.1
Park, S.2
Kilburn, B.3
Jelinek, M.A.4
Henschen-Edman, A.5
Aswad, D.W.6
Stallcup, M.R.7
Laird-Offringa, I.A.8
-
29
-
-
0035855905
-
CREB regulates hepatic gluconeogenesis through the coactivator PGC-1
-
Herzig S, Long F, Jhala US, Hedrick S, Quinn R, Bauer A, Rudolph D, Schutz G, Yoon C, Puigserver P, Spiegelman B, Montminy M. CREB regulates hepatic gluconeogenesis through the coactivator PGC-1. Nature 2001;413:179-83.
-
(2001)
Nature
, vol.413
, pp. 179-183
-
-
Herzig, S.1
Long, F.2
Jhala, U.S.3
Hedrick, S.4
Quinn, R.5
Bauer, A.6
Rudolph, D.7
Schutz, G.8
Yoon, C.9
Puigserver, P.10
Spiegelman, B.11
Montminy, M.12
-
30
-
-
70449927254
-
Prevention of hepatic steatosis and hepatic insulin resistance by knockdown of cAMP response element-binding protein
-
Erion DM, Ignatova ID, Yonemitsu S, Nagai Y, Chatterjee P, Weismann D, Hsiao JJ, Zhang D, Iwasaki T, Stark R, Flannery C, Kahn M, Carmean CM, Yu XX, Murray SF, Bhanot S, Monia BP, Cline GW, Samuel VT, Shulman GI. Prevention of hepatic steatosis and hepatic insulin resistance by knockdown of cAMP response element-binding protein. Cell Metab 2009;10:499-506.
-
(2009)
Cell Metab
, vol.10
, pp. 499-506
-
-
Erion, D.M.1
Ignatova, I.D.2
Yonemitsu, S.3
Nagai, Y.4
Chatterjee, P.5
Weismann, D.6
Hsiao, J.J.7
Zhang, D.8
Iwasaki, T.9
Stark, R.10
Flannery, C.11
Kahn, M.12
Carmean, C.M.13
Yu, X.X.14
Murray, S.F.15
Bhanot, S.16
Monia, B.P.17
Cline, G.W.18
Samuel, V.T.19
Shulman, G.I.20
more..
-
31
-
-
33645649005
-
Signal-dependent control of gluconeogenic key enzyme genes through coactivator-associated arginine methyltransferase 1
-
Krones-Herzig A, Mesaros A, Metzger D, Ziegler A, Lemke U, Bruning JC, Herzig S. Signal-dependent control of gluconeogenic key enzyme genes through coactivator-associated arginine methyltransferase 1. J Biol Chem 2006; 281:3025-9.
-
(2006)
J Biol Chem
, vol.281
, pp. 3025-3029
-
-
Krones-Herzig, A.1
Mesaros, A.2
Metzger, D.3
Ziegler, A.4
Lemke, U.5
Bruning, J.C.6
Herzig, S.7
-
32
-
-
0035930726
-
A transcriptional switch mediated by cofactor methylation
-
Xu W, Chen H, Du K, Asahara H, Tini M, Emerson BM, Montminy M, Evans RM. A transcriptional switch mediated by cofactor methylation. Science 2001;294:2507-11.
-
(2001)
Science
, vol.294
, pp. 2507-2511
-
-
Xu, W.1
Chen, H.2
Du, K.3
Asahara, H.4
Tini, M.5
Emerson, B.M.6
Montminy, M.7
Evans, R.M.8
-
33
-
-
0142123234
-
mSin3A/histone deacetylase 2-and PRMT5-containing Brg1 complex is involved in transcriptional repression of the Myc target gene cad
-
Pal S, Yun R, Datta A, Lacomis L, Erdjument-Bromage H, Kumar J, Tempst P, Sif S. mSin3A/histone deacetylase 2-and PRMT5-containing Brg1 complex is involved in transcriptional repression of the Myc target gene cad. Mol Cell Biol 2003;23:7475-87.
-
(2003)
Mol Cell Biol
, vol.23
, pp. 7475-7487
-
-
Pal, S.1
Yun, R.2
Datta, A.3
Lacomis, L.4
Erdjument-Bromage, H.5
Kumar, J.6
Tempst, P.7
Sif, S.8
-
34
-
-
43249086048
-
The LIM protein AJUBA recruits protein arginine methyltransferase 5 to mediate SNAIL-dependent transcriptional repression
-
Hou Z, Peng H, Ayyanathan K, Yan KP, Langer EM, Longmore GD, Rauscher FJ 3rd. The LIM protein AJUBA recruits protein arginine methyltransferase 5 to mediate SNAIL-dependent transcriptional repression. Mol Cell Biol 2008;28:3198-207.
-
(2008)
Mol Cell Biol
, vol.28
, pp. 3198-3207
-
-
Hou, Z.1
Peng, H.2
Ayyanathan, K.3
Yan, K.P.4
Langer, E.M.5
Longmore, G.D.6
Rauscher, F.J.7
-
35
-
-
33744795753
-
Blimp1 associates with Prmt5 and directs histone arginine methylation in mouse germ cells
-
Ancelin K, Lange UC, Hajkova P, Schneider R, Bannister AJ, Kouzarides T, Surani MA. Blimp1 associates with Prmt5 and directs histone arginine methylation in mouse germ cells. Nat Cell Biol 2006;8:623-30.
-
(2006)
Nat Cell Biol
, vol.8
, pp. 623-630
-
-
Ancelin, K.1
Lange, U.C.2
Hajkova, P.3
Schneider, R.4
Bannister, A.J.5
Kouzarides, T.6
Surani, M.A.7
-
36
-
-
84878460424
-
PRMT5 modulates the metabolic response to fasting signals
-
Tsai WW, Niessen S, Goebel N, Yates JR 3rd, Guccione E, Montminy M. PRMT5 modulates the metabolic response to fasting signals. Proc Natl Acad Sci USA 2013;110:8870-5.
-
(2013)
Proc Natl Acad Sci USA
, vol.110
, pp. 8870-8875
-
-
Tsai, W.W.1
Niessen, S.2
Goebel, N.3
Yates, J.R.4
Guccione, E.5
Montminy, M.6
-
37
-
-
79953796491
-
Arginine methylation by PRMT5 at a naturally occurring mutation site is critical for liver metabolic regulation by small heterodimer partner
-
Kanamaluru D, Xiao Z, Fang S, Choi SE, Kim DH, Veenstra TD, Kemper JK. Arginine methylation by PRMT5 at a naturally occurring mutation site is critical for liver metabolic regulation by small heterodimer partner. Mol Cell Biol 2011;31:1540-50.
-
(2011)
Mol Cell Biol
, vol.31
, pp. 1540-1550
-
-
Kanamaluru, D.1
Xiao, Z.2
Fang, S.3
Choi, S.E.4
Kim, D.H.5
Veenstra, T.D.6
Kemper, J.K.7
-
38
-
-
37249026306
-
PRMT6-mediated methylation of R2 in histone H3 antagonizes H3 K4 trimethylation
-
Hyllus D, Stein C, Schnabel K, Schiltz E, Imhof A, Dou Y, Hsieh J, Bauer UM. PRMT6-mediated methylation of R2 in histone H3 antagonizes H3 K4 trimethylation. Genes Dev 2007;21:3369-80.
-
(2007)
Genes Dev
, vol.21
, pp. 3369-3380
-
-
Hyllus, D.1
Stein, C.2
Schnabel, K.3
Schiltz, E.4
Imhof, A.5
Dou, Y.6
Hsieh, J.7
Bauer, U.M.8
-
39
-
-
77952310684
-
Protein arginine methyltransferase 6 regulates multiple aspects of gene expression
-
Harrison MJ, Tang YH, Dowhan DH. Protein arginine methyltransferase 6 regulates multiple aspects of gene expression. Nucleic Acids Res 2010;38:2201-16.
-
(2010)
Nucleic Acids Res
, vol.38
, pp. 2201-2216
-
-
Harrison, M.J.1
Tang, Y.H.2
Dowhan, D.H.3
-
40
-
-
84895490091
-
Arginine methylation of CRTC2 is critical in the transcriptional control of hepatic glucose metabolism
-
Han HS, Jung CY, Yoon YS, Choi S, Choi D, Kang G, Park KG, Kim ST, Koo SH. Arginine methylation of CRTC2 is critical in the transcriptional control of hepatic glucose metabolism. Sci Signal 2014;7:ra19.
-
(2014)
Sci Signal
, vol.7
-
-
Han, H.S.1
Jung, C.Y.2
Yoon, Y.S.3
Choi, S.4
Choi, D.5
Kang, G.6
Park, K.G.7
Kim, S.T.8
Koo, S.H.9
|