ires介导的促凋亡Bcl2家族成员PUMA的翻译

Atossa Shaltouki, T. Harford, A. Komar, C. M. Weyman
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引用次数: 2

摘要

促凋亡的Bcl-2家族成员PUMA是细胞凋亡的关键调控因子。我们之前已经证明PUMA在与骨骼肌成细胞分化相关的细胞凋亡中起关键作用,并且myod依赖机制是导致这些细胞中PUMA表达增加的原因。在此,我们报道在这些条件下PUMA表达的增加涉及翻译水平的调控。具体来说,我们发现PUMA蛋白水平的增加发生在总蛋白合成减少、eif2 - α磷酸化和eIF4E-BP低磷酸化的情况下,这表明PUMA翻译是通过另一种起始机制进行的。PUMA mRNA的多核糖体分析进一步证实了这一观点。体外和离体(细胞)方法的结合提供了证据表明PUMA mRNA 5'UTR含有内部核糖体进入位点(IRES)元件。利用单顺反子和双顺反子报告结构,我们描绘了一个mRNA片段,该片段允许在体外和体外(在骨骼肌母细胞中)对分化培养基(DM)培养或对dna损伤剂依托opo苷治疗的反应进行帽独立翻译。该mRNA片段也支持HeLa和293T细胞的翻译。因此,我们的数据揭示了ires介导的几种细胞类型和对几种刺激的反应中PUMA表达的新调控。这些发现有助于我们对任何涉及PUMA的发育或治疗方案的理解和潜在操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
IRES-mediated translation of the pro-apoptotic Bcl2 family member PUMA
The proapoptotic Bcl-2 family member PUMA is a critical regulator of apoptosis. We have previously shown that PUMA plays a pivotal role in the apoptosis associated with skeletal myoblast differentiation and that a MyoD-dependent mechanism is responsible for the increased expression of PUMA in these cells. Herein, we report that the increased expression of PUMA under these conditions involves regulation at the level of translation. Specifically, we have found that the increase in PUMA protein levels occurs under conditions of decreased total protein synthesis, eIF2-alpha phosphorylation and hypophosphorylation of eIF4E-BP, suggesting that PUMA translation is proceeding via an alternative initiation mechanism. Polyribosome analysis of PUMA mRNA further corroborated this suggestion. A combination of in vitro and ex vivo (cellular) approaches has provided evidence suggesting that PUMA mRNA 5'UTR harbors an Internal Ribosome Entry Site (IRES) element. Using mono- and bi-cistronic reporter constructs, we have delineated an mRNA fragment that allows for cap-independent translation in vitro and ex vivo (in skeletal myoblasts) in response to culture in differentiation media (DM), or in response to treatment with the DNA-damaging agent, etoposide. This mRNA fragment also supports translation in HeLa and 293T cells. Thus, our data has revealed a novel IRES-mediated regulation of PUMA expression in several cell types and in response to several stimuli. These findings contribute to our understanding and potential manipulation of any developmental or therapeutic scenario involving PUMA.
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