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小鼠血清反应因子基因的条件性诱变会阻断心脏发生及下游基因靶点的转录。

Conditional mutagenesis of the murine serum response factor gene blocks cardiogenesis and the transcription of downstream gene targets.

作者信息

Niu Zhiyv, Yu Wei, Zhang Shu Xing, Barron Matthew, Belaguli Narasimhaswamy S, Schneider Michael D, Parmacek Michael, Nordheim Alfred, Schwartz Robert J

机构信息

Center for Cardiovascular Development, Division of Cardiovascular Sciences, Department of Molecular and Cellular Biology, Baylor College of Medicine, Houston, Texas, 77030, USA.

出版信息

J Biol Chem. 2005 Sep 16;280(37):32531-8. doi: 10.1074/jbc.M501372200. Epub 2005 May 31.

DOI:10.1074/jbc.M501372200
PMID:15929941
Abstract

Serum response factor (SRF) homozygous-null embryos from our backcross of SRF(LacZ/)(+) "knock-in" mice failed to gastrulate and form mesoderm, similar to the findings of an earlier study (Arsenian, S., Weinhold, B., Oelgeschlager, M., Ruther, U., and Nordheim, A. (1998) EMBO J. 17, 6289-6299). Our use of embryonic stem cells provided a model system that could be used to investigate the specification of multiple embryonic lineages, including cardiac myocytes. We observed the absence of myogenic alpha-actins, SM22alpha, and myocardin expression and the failure to form beating cardiac myocytes in aggregated SRF null embryonic stem cells, whereas the appearance of transcription factors Nkx2-5 and GATA4 were unaffected. To study the role of SRF during heart organogenesis, we then performed cardiac-specific ablation of SRF by crossing the transgenic alpha-myosin heavy chain Cre recombinase line with SRF LoxP-engineered mice. Cardiac-specific ablation of SRF resulted in embryonic lethality due to cardiac insufficiency during chamber maturation. Conditional ablation of SRF also reduced cell survival concomitant with increased apoptosis and reduced cellularity. Significant reductions in SRF (> or =95%), atrial naturetic factor (> or =80%), and cardiac (> or =60%), skeletal (> or =90%), and smooth muscle (> or =75%) alpha-actin transcripts were also observed in the cardiac-conditional knock-out heart. This was consistent with the idea that SRF directs de novo cardiac and smooth muscle gene activities. Finally, quantitation of the knock-in LacZ reporter gene transcripts in the hearts of cardiac-conditional knock-out embryos revealed an approximately 30% reduction in gene activity, indicating SRF gene autoregulation during cardiogenesis.

摘要

我们对SRF(LacZ/)(+)“敲入”小鼠进行回交得到的血清反应因子(SRF)纯合缺失胚胎无法进行原肠胚形成并形成中胚层,这与早期一项研究的结果相似(Arsenian, S., Weinhold, B., Oelgeschlager, M., Ruther, U., and Nordheim, A. (1998) EMBO J. 17, 6289 - 6299)。我们对胚胎干细胞的利用提供了一个模型系统,可用于研究包括心肌细胞在内的多个胚胎谱系的特化。我们观察到在聚集的SRF缺失胚胎干细胞中,肌源性α-肌动蛋白、SM22α和心肌转录因子表达缺失,且无法形成跳动的心肌细胞,而转录因子Nkx2 - 5和GATA4的出现未受影响。为了研究SRF在心脏器官发生过程中的作用,我们随后通过将转基因α-肌球蛋白重链Cre重组酶品系与SRF LoxP工程小鼠杂交,对SRF进行心脏特异性消融。SRF的心脏特异性消融导致胚胎因心室成熟过程中心脏功能不全而致死。SRF的条件性消融还伴随着细胞凋亡增加和细胞数量减少,导致细胞存活率降低。在心脏条件性敲除心脏中还观察到SRF(≥95%)、心房利钠因子(≥80%)以及心脏(≥60%)、骨骼肌(≥90%)和平滑肌(≥75%)α-肌动蛋白转录本显著减少。这与SRF指导心脏和平滑肌基因从头激活的观点一致。最后,对心脏条件性敲除胚胎心脏中敲入的LacZ报告基因转录本进行定量分析,结果显示基因活性降低了约30%,表明SRF基因在心脏发生过程中存在自我调节。

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