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MBNL3/CHCR通过抑制MyoD依赖的基因转录来阻止肌源性分化。

MBNL3/CHCR prevents myogenic differentiation by inhibiting MyoD-dependent gene transcription.

作者信息

Lee Kyung-Soon, Smith Kimberly, Amieux Paul S, Wang Edith H

机构信息

Department of Pharmacology, School of Medicine, University of Washington, 1959 NE Pacific Street, P. O. Box 357280, Seattle, WA 98195-7280, USA.

出版信息

Differentiation. 2008 Mar;76(3):299-309. doi: 10.1111/j.1432-0436.2007.00209.x. Epub 2007 Aug 14.

Abstract

Muscle differentiation is controlled by positive and negative signals. While much attention has been placed on proteins that promote muscle formation, the importance of negative regulators has been underemphasized. MBNL3/CHCR belongs to the muscleblind family of Cys3His zinc finger proteins implicated in myotonic dystrophy. MBNL3 is expressed in myoblasts, muscle precursor cells, and during the early stages of myogenesis, but is detected at very low levels in terminally differentiated myotubes. Constitutive expression of MBNL3 inhibits myotube formation and antagonizes myogenin and myosin heavy chain expression. To identify MBNL3 target genes, we compared the expression profile of C2C12 mouse myoblasts that constitutively express MBNL3 with control cells. From the 15,247 genes represented on the DNA microarray, classification by biological function indicated that genes involved in muscle development/contraction and cell adhesion were down-regulated by MBNL3 expression. mRNA and protein levels for the muscle transcription factor MyoD and E-box regulated transcription were reduced in C2C12-MBNL3 expressing cells. We hypothesize that MBNL3 serves to antagonize muscle differentiation by suppressing MyoD expression levels to prevent unwanted myogenic gene transcription. These findings are the first indication that a mammalian muscleblind-like (MBNL) protein plays a regulatory role in muscle differentiation under nonpathogenic conditions.

摘要

肌肉分化受正向和负向信号的控制。虽然人们对促进肌肉形成的蛋白质给予了很多关注,但负向调节因子的重要性却一直未得到充分重视。MBNL3/CHCR属于与强直性肌营养不良相关的Cys3His锌指蛋白的肌肉blind家族。MBNL3在成肌细胞、肌肉前体细胞以及肌生成的早期阶段表达,但在终末分化的肌管中检测到的水平非常低。MBNL3的组成型表达抑制肌管形成,并拮抗肌细胞生成素和肌球蛋白重链的表达。为了鉴定MBNL3的靶基因,我们将组成型表达MBNL3的C2C12小鼠成肌细胞与对照细胞的表达谱进行了比较。在DNA微阵列上代表的15247个基因中,按生物学功能分类表明参与肌肉发育/收缩和细胞黏附的基因因MBNL3的表达而下调。在表达C2C-12-MBNL3的细胞中,肌肉转录因子MyoD和E盒调节转录的mRNA和蛋白质水平降低。我们推测MBNL3通过抑制MyoD表达水平来拮抗肌肉分化,以防止不必要的肌源性基因转录。这些发现首次表明,一种哺乳动物类肌肉blind(MBNL)蛋白在非致病条件下的肌肉分化中发挥调节作用。

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