Srivastava Devika, Mukherjee Rukmini, Mookherjee Debdatto, Chakrabarti Oishee
Biophysics & Structural Genomics Division, Saha Institute of Nuclear Physics, 1/AF Bidhannagar, Kolkata 700064, India.
Biochem Cell Biol. 2016 Aug;94(4):359-69. doi: 10.1139/bcb-2015-0161. Epub 2016 Apr 21.
Mahogunin RING Finger 1 (MGRN1) is a ubiquitin E3 ligase known to affect spindle tilt in mitotic cells by regulating α-tubulin ubiquitination and polymerization. In cell culture systems we have found that expressing truncated mutants of MGRN1 leads to various other mitotic anomalies, such as lateral and angular spindle displacements. This seems to be independent of the MGRN1 ligase activity. Our experiments suggest that MGRN1 regulates the balance between the lower molecular weight monomeric Gαi and larger trimeric G-protein complex, along with its abundance in the ternary complex that regulates spindle positioning. The cytosolic isoforms of MGRN1 lead to the enrichment of monomeric Gαi in the cytosol and its subsequent recruitment at the plasma membrane. Excess Gαi at the cell cortex results in an imbalance in the assembly of the ternary complex regulating spindle positioning during mitosis. These observations seem independent of the ligase activity of MGRN1, although we cannot exclude the involvement of an intermediate player that acts as a substrate for MGRN1, and in turn, regulates Gαi.
马霍古宁环指蛋白1(MGRN1)是一种泛素E3连接酶,已知其通过调节α-微管蛋白的泛素化和聚合作用来影响有丝分裂细胞中的纺锤体倾斜。在细胞培养系统中,我们发现表达MGRN1的截短突变体可导致各种其他有丝分裂异常,如纺锤体的侧向和角度位移。这似乎与MGRN1连接酶活性无关。我们的实验表明,MGRN1调节低分子量单体Gαi和较大的三聚体G蛋白复合物之间的平衡,以及其在调节纺锤体定位的三元复合物中的丰度。MGRN1的胞质异构体导致单体Gαi在胞质中富集,并随后在质膜上募集。细胞皮质处过量的Gαi导致有丝分裂期间调节纺锤体定位的三元复合物组装失衡。这些观察结果似乎与MGRN1的连接酶活性无关,尽管我们不能排除存在充当MGRN1底物并进而调节Gαi的中间参与者的参与。