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The microRNA 15/16 cluster downregulates protein repair isoaspartyl methyltransferase in hepatoma cells: implications for apoptosis regulation.

机译:microRNa 15/16簇下调肝癌细胞中的蛋白质修复异天冬氨酰甲基转移酶:对细胞凋亡调节的影响。

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摘要

Asparaginyl deamidation, a spontaneous protein post-biosynthetic modification, determines isoaspartyl formation and structural-functional impairment. The i s o a s p a r t y l p ro t e i n c a r b o x y l - O -methyltransferase (PCMT; EC 2.1.1.77) catalyzes the repair of the isopeptide bonds at isoaspartyl sites, preventing deamidationrelated functional impairment. Protein deamidation affects key apoptosis mediators, such as BclxL, thus increasing susceptibility to apoptosis, while PCMT activity may effectively counteract such alterations. Aims of this work was to establish the role of RNAi as a potential mechanism for regulating PCMT expression and its possible implications in apoptosis. We investigated the regulatory properties of miR15a/16-1 cluster on PCMT expression on HepG2 cells. MiR15a or 16-1 transfection, as well their relevant antagonists, showed that PCMT is effectively regulated by this miRNA cluster. The direct interaction of these two miRNAs with the seed sequence at the 3 UTR of PCMT transcripts was demonstrated by luciferase assay system. The role of PCMT downre g u l a t i o n i n conditiong t h e susceptibility to apoptosis was investigated by using various specific snRNA approaches, in order to prevent non PCMT specific pleiotropic effects to take place. We found that PCMT silencing is associated with an increase of the BclxL isoform which has been reported to be inactivated by deamidation, thus making cells more susceptible to apoptosis induced by cisplatinum. We conclude that PCMT is effectively regulated by the miR15a-16-1 cluster and is involved in apoptosis by preserving the structural stability and biological function of BclxL from deamidation. Control of PCMT expression by snRNAs may thus represent a late check point in apoptosis regulation.
机译:生物合成后的自发蛋白质天冬酰胺基脱酰胺作用决定了异天冬氨酰的形成和结构功能的损害。 I-O-甲基转移酶(PCMT; EC 2.1.1.77)催化异天冬氨酰位点异肽键的修复,防止脱酰胺相关的功能障碍。蛋白质脱酰胺作用影响关键的凋亡介体,例如BclxL,从而增加了对凋亡的敏感性,而PCMT活性可能有效地抵消了这种改变。这项工作的目的是确定RNAi作为调控PCMT表达的潜在机制及其对细胞凋亡的潜在影响。我们调查了miR15a / 16-1簇对HepG2细胞PCMT表达的调控特性。 MiR15a或16-1转染,以及它们相关的拮抗剂,表明PCMT受此miRNA簇有效调节。萤光素酶测定系统证实了这两个miRNA与PCMT转录本的3 UTR处的种子序列的直接相互作用。为了防止发生非PCMT特有的多效性作用,通过使用各种特定的snRNA方法研究了PCMT抑制条件对细胞凋亡易感性的作用。我们发现PCMT沉默与BclxL同工型的增加有关,据报道该同工型是通过脱酰胺作用失活的,因此使细胞更容易受到顺铂诱导的凋亡的影响。我们得出的结论是PCMT受miR15a-16-1簇有效调节,并通过保持BclxL的脱酰胺作用的结构稳定性和生物学功能而参与凋亡。因此,snRNA对PCMT表达的控制可能代表了细胞凋亡调控的后期检查点。

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