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Mahogunin-mediated α-tubulin ubiquitination via noncanonical K6 linkage regulates microtubule stability and mitotic spindle orientation

机译:Mahogunin介导的α通过非甘露糖蛋白泛素通过非甘露糖k6连杆调节微管稳定性和有丝分裂主轴取向

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Mahogunin ring finger-1 (MGRN1) is a cytosolic ubiquitin ligase whose disruption or interaction with some isoforms of cytosolically exposed prion protein leads to spongiform neurodegeneration and also lack of which results in reduced embryonic viability due to mispatterning of the left–right (LR) axis during development. Here we demonstrate an interaction between the cytoskeletal protein α -tubulin and MGRN1. In cultured cell systems, loss of the ubiquitin E3 ligase activity of MGRN1 results in spindle misorientation and decreased α -tubulin polymerization, an effect also seen in primary cells. α -Tubulin was post-translationally modified by MGRN1 via noncanonical K6-linked polyubiquitination. This was significant because expression of catalytically inactive MGRN1 and/or ubiquitin mutant capable of only monoubiquitination resulted in similar mitotic spindle misorientation. The modulatory effect of MGRN1 was specific for α -tubulin and similar changes could not be detected in β - or γ-tubulin. However, catalytic inactivation of MGRN1 did not abrogate monoubiquitination of α -tubulin, thus unraveling a unique dual mode of ubiquitination by an unknown E3 ligase and MGRN1. MGRN1-mediated α -tubulin modification, and hence its stability, may highlight a key event in the LR patterning during embryogenesis.
机译:Mahogunin Ring Finger-1(MGRN1)是一种细胞溶质泛素连接酶,其破坏或相互作用与细胞骨嘌呤暴露朊病毒蛋白的一些同种型导致海绵状神经变性,并且由于左右的错误分配器(LR)导致的胚胎活力降低导致胚胎活力降低开发期间的轴。在这里,我们证明了细胞骨架蛋白α-丁蛋白和MGRN1之间的相互作用。在培养的细胞体系中,MGRN1的泛素E3连接酶活性的丧失导致主轴错位和降低α-丁蛋白聚合,在原代细胞中也观察到的效果。 α-丁蛋白通过非甘露酰基-6连接的多覆代通过MGRN1翻译翻译后修饰。这是显着的,因为能够仅能够只能在单张化素化的催化活性MGRN1和/或泛素突变体的表达导致类似的有丝分裂主轴杂志。 MGRN1的调节效果特异于α-丁蛋白,在β-或γ-微管蛋白中无法检测到类似的变化。然而,MGRN1的催化失活并未消除α-丁蛋白的单次突出,因此通过未知的E3连接酶和MGRN1解开独特的泛素模式。 MGRN1介导的α-丁蛋白修饰,因此其稳定性可以突出胚胎发生期间LR图案中的关键事件。

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