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Human MDM2 Isoforms Translated Differentially on Constitutive versus p53-Regulated Transcripts Have Distinct Functions in the p53/MDM2 and TSG101/MDM2 Feedback Control Loops▿

机译:本构和p53调控转录本差异翻译的人类MDM2亚型在p53 / MDM2和TSG101 / MDM2反馈控制环中具有不同的功能▿

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摘要

Proteins encoded by the mdm2 gene, which has a pivotal role in the regulation of growth and differentiation, exist principally in human and murine cells as two isoforms that migrate in gels as 75-kDa and 90-kDa proteins. There is limited understanding of the respective biological roles of these isoforms, their molecular nature, and their mechanism of formation. We report here that human p75MDM2 is an N-terminally truncated mixture of protein isoforms produced by the initiation of translation at two distinct internal AUG codons. The p75MDM2 doublets and p90MDM2, which is the full-length MDM2 protein, are expressed in approximately equal amounts from transcripts initiated at the constitutive P1 promoter of mdm2. Unlike murine transcripts initiated at the p53-activated P2 promoter, human cell transcripts initiated at the P2 promoter preferentially produce p90MDM2. The ubiquitin enzyme variant protein TSG101, which interacts functionally with MDM2 in an autoregulatory loop that parallels the p53/MDM2 feedback control loop, interferes with degradation of both isoforms; however, only p90MDM2 promotes proteolysis of TSG101 and p53. Our results reveal the mechanism of formation of the principal MDM2 isoforms, the differential effects of p53 on the production of these isoforms, and the differential abilities of human MDM2 isoforms as regulators of the MDM2/TSG101 and p53/MDM2 feedback control loops.
机译:由mdm2基因编码的蛋白质在调节生长和分化中起着关键作用,主要存在于人类和鼠类细胞中,是两种同种型,它们以75 kDa和90 kDa的蛋白质形式在凝胶中迁移。对这些同工型的各自生物学作用,它们的分子性质及其形成机理的了解有限。我们在这里报告说,人p75MDM2是N-末端被截断的蛋白质同工型混合物,通过在两个不同的内部AUG密码子的翻译起始而产生。 p75MDM2双峰和p90MDM2(全长MDM2蛋白)从mdm2组成型P1启动子处起始的转录本中表达的量大致相等。与在p53激活的P2启动子上启动的鼠类转录本不同,在P2启动子上启动的人细胞转录本优先产生p90MDM2。泛素酶变异蛋白TSG101在平行于p53 / MDM2反馈控制环的自调节环中与MDM2功能性相互作用,干扰了两种同工型的降解。但是,只有p90MDM2会促进TSG101和p53的蛋白水解。我们的结果揭示了主要MDM2同工型的形成机理,p53对这些同工型生产的不同影响,以及人类MDM2同工型作为MDM2 / TSG101和p53 / MDM2反馈控制环调节剂的不同能力。

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