Selvaraj Ahalya, Prywes Ron
Department of Biological Sciences, Columbia University, 1212 Amsterdam Avenue, New York, NY 10027, USA.
J Biol Chem. 2003 Oct 24;278(43):41977-87. doi: 10.1074/jbc.M305679200. Epub 2003 Aug 14.
Serum response factor (SRF) is required for the expression of a wide variety of muscle-specific genes that are expressed upon differentiation and is thus required for both striated and smooth muscle differentiation in addition to its role in regulating growth factor-inducible genes. A heart and smooth muscle-specific SRF co-activator, myocardin, has been shown to be required for cardiac development and smooth muscle differentiation. However, no such co-factors of SRF have been identified in the skeletal myogenic differentiation program. Myocardin and the related transcription factor megakaryoblastic leukemia-1 (MKL1/MAL/MRTF-A) can strongly potentiate the activity of SRF. Here we report the cloning of the third member of the myocardin/MKL family in humans, MKL2. MKL2 binds to and activates SRF similar to myocardin and MKL1. To determine the role of these factors in skeletal myogenic differentiation we used a dominant negative MKL2 to show that the MKL family of proteins is required for skeletal myogenic differentiation. Expression of the dominant negative protein in C2C12 skeletal myoblasts blocked the differentiation-induced expression of the SRF target genes skeletal alpha-actin and alpha-myosin heavy chain and blocked differentiation of the myoblasts to myotubes in vitro. C2C12 cells express both MKL1 and MKL2, but not myocardin, implicating MKL1 and/or MKL2 in the requirement for skeletal myogenic differentiation. MKL1 was predominantly cytoplasmic in C2C12 cells, with a small amount in the nucleus, however, no movement of MKL1 to the nucleus was observed upon differentiation.
血清反应因子(SRF)对于多种在分化时表达的肌肉特异性基因的表达是必需的,因此除了其在调节生长因子诱导基因中的作用外,对于横纹肌和平滑肌的分化也是必需的。一种心脏和平滑肌特异性的SRF共激活因子,心肌素,已被证明是心脏发育和平滑肌分化所必需的。然而,在骨骼肌生成分化程序中尚未鉴定出SRF的此类辅助因子。心肌素和相关转录因子巨核细胞白血病-1(MKL1/MAL/MRTF-A)可强烈增强SRF的活性。在此,我们报告了人类心肌素/MKL家族第三个成员MKL2的克隆。MKL2与心肌素和MKL1类似,能结合并激活SRF。为了确定这些因子在骨骼肌生成分化中的作用,我们使用了显性负性MKL2来表明MKL蛋白家族是骨骼肌生成分化所必需的。在C2C12骨骼肌成肌细胞中表达显性负性蛋白可阻断SRF靶基因骨骼肌α-肌动蛋白和α-肌球蛋白重链的分化诱导表达,并在体外阻断成肌细胞向肌管的分化。C2C12细胞同时表达MKL1和MKL2,但不表达心肌素,这表明MKL1和/或MKL2参与了骨骼肌生成分化的需求。在C2C12细胞中,MKL1主要位于细胞质中,细胞核中有少量,然而,在分化过程中未观察到MKL1向细胞核的移动。