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衰老血管中Nox4的上调及其与平滑肌细胞多倍体的关联。

Upregulation of Nox4 in the aging vasculature and its association with smooth muscle cell polyploidy.

作者信息

McCrann Donald J, Yang Dan, Chen Hongjie, Carroll Shannon, Ravid Katya

机构信息

Department of Biochemistry and Whitaker Cardiovascular Institute, Boston University School of Medicine, Boston, Massachusetts, USA.

出版信息

Cell Cycle. 2009 Mar 15;8(6):902-8. doi: 10.4161/cc.8.6.7900. Epub 2009 Mar 21.

Abstract

Our recent reports indicated that polyploidization of aortic vascular smooth muscle cells (VSMC) serves as a biomarker for aging, and that the polyploid state is linked to a higher incidence of senescence in vivo. Here, we found that NADPH oxidase 4 (Nox4) expression is augmented in VSMC from aortas of old rats and that Nox4 levels are increased in polyploid VSMC in comparison to diploid cells in vivo. Seeking to determine if Nox4 upregulation plays a causal role in the accumulation of polyploid cells, we performed ploidy analysis on primary VSMC transduced with Nox4 adenovirus. We observed a consistent accumulation of polyploid cells and a concomitant decrease in the percentage of diploid cells in Nox4 overexpressing cells in comparison to controls or to cells overexpressing dominant negative Nox4. Further exploration of this phenomenon in VSMC cultures identified a Nox4-induced decrease in the chromosome passenger protein, survivin, whose absence and mislocalization during polyploidization was previously shown to induce VSMC polyploidy. Taken together, our study is the first to show increased Nox4 levels in VSMC during aging, and to demonstrate its role in induction of polyploidy in this lineage.

摘要

我们最近的报告表明,主动脉血管平滑肌细胞(VSMC)的多倍体化是衰老的生物标志物,并且多倍体状态与体内更高的衰老发生率相关。在此,我们发现老年大鼠主动脉VSMC中NADPH氧化酶4(Nox4)的表达增加,并且与体内二倍体细胞相比,多倍体VSMC中Nox4水平升高。为了确定Nox4上调是否在多倍体细胞的积累中起因果作用,我们对用Nox4腺病毒转导的原代VSMC进行了倍性分析。与对照或过表达显性负性Nox4的细胞相比,我们观察到Nox4过表达细胞中多倍体细胞持续积累,二倍体细胞百分比随之降低。在VSMC培养物中对这一现象的进一步探索发现,Nox4诱导染色体乘客蛋白survivin减少,先前已表明在多倍体化过程中survivin的缺失和错误定位会诱导VSMC多倍体化。综上所述,我们的研究首次表明衰老过程中VSMC中Nox4水平升高,并证明了其在该谱系中诱导多倍体化的作用。

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