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Structural basis of tubulin detyrosination by VASH2/SVBP heterodimer

机译:Vash2 / SVBP异二聚体管蛋白序列的结构基础

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The C-terminus of α-tubulin undergoes a detyrosination/tyrosination cycle and dysregulation of this cycle is associated with cancer and other diseases. The molecular mechanisms of tubulin tyrosination are well studied, however it has remained unknown how tyrosine is cleaved from the tubulin tail. Here, we report the crystal structure of the long-sought detyrosination enzyme, the VASH2/SVBP heterodimer at 2.2?? resolution and the structure of the tail/VASH2/SVBP complex at 2.5?? resolution. VASH2 possesses a non-canonical Cys-His-Ser catalytic architecture for tyrosine cleavage. The dynamics of the α1- and α2- helices of VASH2 are related to the insolubility of VASH2. SVBP plays a chaperone-like role by extensively interacting with VASH2 and stabilizing these dynamic helices. A positively charged groove around the catalytic pocket and the α1- and α2- helices of VASH2 targets the tubulin tail for detyrosination. We provide insights into the mechanisms underlying the cycle of tubulin tyrosine cleavage and religation.
机译:α-微管蛋白的C-末端经历过筛选/珠膦循环,并且该循环的失调与癌症和其他疾病有关。微管蛋白珠膦的分子机制很好地研究,但它仍然是未知酪氨酸的未知从微管蛋白尾部切割。在这里,我们报告了长寻求浸出酶的晶体结构,Vash2 / SVBP异二聚体在2.2 ??分辨率和尾部/ vash2 / svbp复合物的结构在2.5 ??解析度。 vash2拥有酪氨酸切割的非规范性Cys-Ser-Ser催化建筑。 Vash2的α1-和α2-螺旋的动态与Vash2的不可溶性有关。 SVBP通过与VASH2广泛互动并稳定这些动态螺旋来发挥伴侣样作用。催化口袋周围的带正电荷的凹槽和Vash2的α1-和α2-螺旋靶向管蛋白尾部以进行脱滤。我们提供对小管蛋白酪氨酸裂解和缓解循环的机制的见解。

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