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心肌细胞发育过程中的细胞周期概况以及p21CIP1和p27KIP1的表达情况。

Cell cycle profiles and expressions of p21CIP1 AND P27KIP1 during myocyte development.

作者信息

Poolman R A, Gilchrist R, Brooks G

机构信息

Cardiovascular Cellular and Molecular Biology Laboratory, The Rayne Institute, St. Thomas' Hospital, London, United Kingdom.

出版信息

Int J Cardiol. 1998 Dec 1;67(2):133-42. doi: 10.1016/s0167-5273(98)00320-9.

Abstract

The ability of the cardiac myocyte to divide ceases shortly after birth. Thus, following severe injury, e.g., during myocardial infarction, the mature heart is unable to regenerate new tissue to replace the dead or damaged tissue. The identification of the molecules controlling the cessation of myocyte cell division may lead to therapeutic strategies which aim to re-populate the damaged myocardial area. Hence, we have determined the cell cycle profile, expressions and activities of the cyclin-dependent kinase inhibitors (CDKIs), p21CIP1 and p27KIP1, during rat ventricular myocyte development. Fluorescent activated cell sorting (FACS) analyses showed the percentage of S phase myocytes to be decreased significantly throughout development, concomitant with a significant increase in the percentage of G0/G1 and G2/M phase cells. The expression of p21CIP1 and p27KIP1 increased significantly throughout cardiac development and complexed differentially with a number of cyclins and CDKs. Furthermore, an adult myocyte extract reduced neonatal myocyte CDK2 kinase activity significantly (>30%, p<0.05) whereas immunodepletion of p21CIP1 from adult lysates restored CDK2 kinase activity. Thus, p21CIP1 and p27KIP1 may be important for the withdrawal of cardiac myocytes from the cell cycle and for maintaining the G0/G1 and G2/M phase blockades.

摘要

心肌细胞在出生后不久就停止了分裂能力。因此,在遭受严重损伤后,例如在心肌梗死期间,成熟的心脏无法再生新的组织来替代死亡或受损的组织。确定控制心肌细胞分裂停止的分子可能会带来旨在重新填充受损心肌区域的治疗策略。因此,我们已经确定了大鼠心室肌细胞发育过程中细胞周期谱、细胞周期蛋白依赖性激酶抑制剂(CDKIs)p21CIP1和p27KIP1的表达及活性。荧光激活细胞分选(FACS)分析表明,在整个发育过程中,S期心肌细胞百分比显著降低,同时G0/G1期和G2/M期细胞百分比显著增加。在心脏发育过程中,p21CIP1和p27KIP1的表达显著增加,并与多种细胞周期蛋白和细胞周期蛋白依赖性激酶发生不同的结合。此外,成年心肌细胞提取物显著降低了新生心肌细胞的CDK2激酶活性(>30%,p<0.05),而从成年心肌细胞裂解物中免疫去除p21CIP1可恢复CDK2激酶活性。因此,p21CIP1和p27KIP1可能对于心肌细胞退出细胞周期以及维持G0/G1期和G2/M期阻滞很重要。

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