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Sall1 抑制基序中的拟磷酸化突变破坏了核小体重塑和去乙酰化酶复合物的募集以及 Gbx2 的抑制。

A phosphomimetic mutation in the Sall1 repression motif disrupts recruitment of the nucleosome remodeling and deacetylase complex and repression of Gbx2.

作者信息

Lauberth Shannon M, Bilyeu Amy C, Firulli Beth A, Kroll Kristen L, Rauchman Michael

机构信息

Department of Biochemistry, Saint Louis University, St. Louis, Missouri, USA.

出版信息

J Biol Chem. 2007 Nov 30;282(48):34858-68. doi: 10.1074/jbc.M703702200. Epub 2007 Sep 25.

Abstract

The multizinc finger transcription factor Sall1 is a critical developmental regulator that mediates repression through the recruitment of the nucleosome remodeling and deacetylase (NuRD) complex. Although a short conserved peptide motif in Sall1 is sufficient to recruit NuRD, its ability to regulate native Sall1 target genes in vivo has not been demonstrated. In this report, we demonstrate an in vivo role for the Sall1 repression motif and describe a novel direct target gene of Sall1, Gbx2, that is directly repressed in a NuRD-dependent fashion. The ability of Sall1 to repress Gbx2 was impaired in Xenopus embryos expressing mutant forms of Sall1 that are defective for NuRD binding. Finally, we demonstrate that protein kinase C phosphorylates serine 2 of the Sall1 repression motif and reveal that a phosphomimetic mutation of serine 2 disrupts the ability of Sall1 to repress Gbx2 in cell culture and Xenopus embryos. Together, these studies establish that Sall1 recruits NuRD via the Sall1 repression motif to mediate repression of a native target gene and suggest a model in which dynamic control of gene expression by Sall1 is modulated by serine phosphorylation of the Sall1 repression motif.

摘要

多锌指转录因子Sall1是一种关键的发育调节因子,它通过募集核小体重塑和去乙酰化酶(NuRD)复合物来介导基因抑制。尽管Sall1中一个短的保守肽基序足以募集NuRD,但其在体内调节天然Sall1靶基因的能力尚未得到证实。在本报告中,我们证明了Sall1抑制基序在体内的作用,并描述了一个新的Sall1直接靶基因Gbx2,它以NuRD依赖的方式被直接抑制。在表达对NuRD结合有缺陷的Sall1突变形式的非洲爪蟾胚胎中,Sall1抑制Gbx2的能力受损。最后,我们证明蛋白激酶C使Sall1抑制基序的丝氨酸2磷酸化,并发现丝氨酸2的拟磷酸化突变破坏了Sall1在细胞培养和非洲爪蟾胚胎中抑制Gbx2的能力。总之,这些研究表明Sall1通过Sall1抑制基序募集NuRD来介导对天然靶基因的抑制,并提出了一个模型,即Sall1对基因表达的动态控制是由Sall1抑制基序的丝氨酸磷酸化调节的。

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