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IG20基因的MADD/DENN剪接变体对癌细胞存活而言是必要且充分的。

MADD/DENN splice variant of the IG20 gene is necessary and sufficient for cancer cell survival.

作者信息

Mulherkar N, Ramaswamy M, Mordi D C, Prabhakar B S

机构信息

Department of Microbiology and Immunology, College of Medicine, University of Illinois at Chicago, Chicago, IL 60612, USA.

出版信息

Oncogene. 2006 Oct 12;25(47):6252-61. doi: 10.1038/sj.onc.1209650. Epub 2006 May 8.

DOI:10.1038/sj.onc.1209650
PMID:16682944
Abstract

The IG20 gene is overexpressed in human tumors and cancer cell lines, and encodes at least four splice variants (SVs) namely, IG20pa, MADD, IG20-SV2 and DENN-SV. Earlier, gain-of-function studies showed that IG20-SVs can exhibit diverse functions and play a critical role in cell proliferation and apoptosis. Expression of exogenous IG20pa or DENN-SV rendered cells either susceptible or resistant to induced apoptosis, respectively, whereas MADD and IG20-SV2 had no apparent effect. In order to understand the contrasting effects of the IG20-SVs in a physiologically more relevant system, we expressed exon-specific small hairpin RNAs (shRNAs) to selectively knockdown specific IG20-SVs. Consistent with an earlier study, knockdown of all IG20-SVs resulted in spontaneous apoptosis of HeLa and PA-1 cells. In addition, we unambiguously demonstrated that knockdown of MADD can render cells susceptible to spontaneous apoptosis but had no discernible effect on cell proliferation, colony size or cell cycle progression. Moreover, expression of MADD alone, and not DENN-SV, in the absence of endogenous IG20-SVs was sufficient to prevent spontaneous apoptosis. Our results show the utility of shRNAs for selective knockdown of particular IG20-SVs and their potential therapeutic value in cancer. Further, they demonstrate that MADD alone is sufficient and necessary for cancer cell survival.

摘要

IG20基因在人类肿瘤和癌细胞系中过表达,编码至少四种剪接变体(SVs),即IG20pa、MADD、IG20 - SV2和DENN - SV。此前,功能获得性研究表明,IG20 - SVs可表现出多种功能,并在细胞增殖和凋亡中起关键作用。外源性IG20pa或DENN - SV的表达分别使细胞对诱导凋亡敏感或产生抗性,而MADD和IG20 - SV2则无明显影响。为了在生理上更相关的系统中理解IG20 - SVs的不同作用,我们表达了外显子特异性小发夹RNA(shRNAs)以选择性敲低特定的IG20 - SVs。与早期研究一致,敲低所有IG20 - SVs导致HeLa和PA - 1细胞自发凋亡。此外,我们明确证明,敲低MADD可使细胞易发生自发凋亡,但对细胞增殖、集落大小或细胞周期进程无明显影响。而且,在没有内源性IG20 - SVs的情况下,单独表达MADD而非DENN - SV足以防止自发凋亡。我们的结果显示了shRNAs用于选择性敲低特定IG20 - SVs的实用性及其在癌症中的潜在治疗价值。此外,它们证明了单独的MADD对癌细胞存活是充分且必要的。

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