Biophysics & Structural Genomics Division, Saha Institute of Nuclear Physics, Kolkata, India.
Traffic. 2017 Dec;18(12):791-807. doi: 10.1111/tra.12527. Epub 2017 Oct 4.
MGRN1-mediated ubiquitination of α-tubulin regulates microtubule stability and mitotic spindle positioning in mitotic cells. This study elucidates the effect of MGRN1-mediated ubiquitination of α-tubulin in interphase cells. Here, we show that MGRN1-mediated ubiquitination regulates dynamics of EB1-labeled plus ends of microtubules. Intracellular transport of mitochondria and endosomes are affected in cultured cells where functional MGRN1 is depleted. Defects in microtubule-dependent organellar transport are evident in cells where noncanonical K6-mediated ubiquitination of α-tubulin by MGRN1 is compromised. Loss of MGRN1 has been previously correlated with late-onset spongiform neurodegeneration. Mislocalised cytosolically exposed PrP ( PrP) interacts with MGRN1 leading to its loss of function. Expression of PrP generating mutants of PrP[PrP(A117V) and PrP(KHII)] lead to decrease in MGRN1-mediated ubiquitination of α-tubulin and intracellular transport defects. Brain lysates from PrP(A117V) transgenic mice also indicate loss of tubulin polymerization as compared to non-transgenic controls. Depletion of MGRN1 activity may hamper physiologically important processes like mitochondrial movement in neuronal processes and intracellular transport of ligands through the endosomal pathway thereby contributing to the pathogenesis of neurodegeneration in certain types of prion diseases.
MGRN1 介导的α-微管蛋白泛素化调节有丝分裂细胞中微管的稳定性和有丝分裂纺锤体定位。本研究阐明了 MGRN1 介导的α-微管蛋白泛素化在细胞间期中的作用。在这里,我们表明 MGRN1 介导的泛素化调节 EB1 标记的微管正端的动态。在功能 MGRN1 耗尽的培养细胞中,线粒体和内体的细胞内运输受到影响。在非典型 K6 介导的 MGRN1 对α-微管蛋白的泛素化受损的细胞中,微管依赖性细胞器运输缺陷明显。MGRN1 的缺失先前与迟发性海绵状神经退行性变相关。错误定位的细胞质暴露的 PrP(PrP)与 MGRN1 相互作用,导致其功能丧失。表达 PrP 生成突变体 PrP[PrP(A117V)和 PrP(KHII)]导致 MGRN1 介导的α-微管蛋白泛素化和细胞内运输缺陷减少。与非转基因对照相比,PrP(A117V)转基因小鼠的脑裂解物也表明微管聚合丧失。MGRN1 活性的耗竭可能会阻碍生理上重要的过程,如神经元突起中的线粒体运动和通过内体途径的配体的细胞内运输,从而导致某些类型的朊病毒病的神经退行性变的发病机制。