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CMF1核定位结构域的特异性缺失导致禽骨骼肌成肌细胞的细胞周期退出不完全和分化受损。

Specific deletion of CMF1 nuclear localization domain causes incomplete cell cycle withdrawal and impaired differentiation in avian skeletal myoblasts.

作者信息

Dees Ellen, Robertson J Brian, Zhu Tianli, Bader David

机构信息

Department of Pediatrics, Vanderbilt University Medical Center, Nashville, TN 37232, USA.

出版信息

Exp Cell Res. 2006 Oct 1;312(16):3000-14. doi: 10.1016/j.yexcr.2006.06.027. Epub 2006 Jun 27.

Abstract

CMF1 is a protein expressed in embryonic striated muscle with onset of expression preceding that of contractile proteins. Disruption of CMF1 in myoblasts disrupts muscle-specific protein expression. Preliminary studies indicate both nuclear and cytoplasmic distribution of CMF1 protein, suggesting functional roles in both cellular compartments. Here we examine the nuclear function of CMF1, using a newly characterized antibody generated against the CMF1 nuclear localization domain and a CMF1 nuclear localization domain-deleted stable myocyte line. The antibody demonstrates nuclear distribution of the CMF1 protein both in vivo and in cell lines, with clustering of CMF1 protein around chromatin during mitosis. In more differentiated myocytes, the protein shifts to the cytoplasm. The CMF1 NLS-deleted cell lines have markedly impaired capacity to differentiate. Specifically, these cells express less contractile protein than wild-type or full-length CMF1 stably transfected cells, and do not fuse properly into multinucleate syncytia with linear nuclear alignment. In response to low serum medium, a signal to differentiate, CMF1 NLS-deleted cells enter G0, but continue to express proliferation markers and will reenter the cell cycle when stimulated by restoring growth medium. These data suggest that CMF1 is involved in regulation the transition from proliferation to differentiation in embryonic muscle.

摘要

CMF1是一种在胚胎横纹肌中表达的蛋白质,其表达起始时间早于收缩蛋白。成肌细胞中CMF1的破坏会扰乱肌肉特异性蛋白的表达。初步研究表明CMF1蛋白在细胞核和细胞质中均有分布,提示其在这两个细胞区室中均发挥功能作用。在此,我们使用针对CMF1核定位结构域产生的一种新鉴定的抗体以及一种缺失CMF1核定位结构域的稳定肌细胞系,来研究CMF1的核功能。该抗体在体内和细胞系中均显示CMF1蛋白的核分布,在有丝分裂期间CMF1蛋白聚集在染色质周围。在分化程度更高的肌细胞中,该蛋白转移至细胞质。缺失CMF1核定位信号的细胞系分化能力明显受损。具体而言,这些细胞表达的收缩蛋白比野生型或稳定转染全长CMF1的细胞少,并且不能正确融合形成具有线性核排列的多核合胞体。响应低血清培养基(一种分化信号)时,缺失CMF1核定位信号的细胞进入G0期,但继续表达增殖标志物,并且在恢复生长培养基刺激时会重新进入细胞周期。这些数据表明CMF1参与调控胚胎肌肉中从增殖到分化的转变。

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