From the Department of Molecular Cellular Biology University of California, Davis, California 95616.
From the Department of Molecular Cellular Biology University of California, Davis, California 95616
J Biol Chem. 2018 Jul 6;293(27):10590-10605. doi: 10.1074/jbc.RA117.001215. Epub 2018 May 11.
The reorganization of microtubules in mitosis, meiosis, and development requires the microtubule-severing activity of katanin. Katanin is a heterodimer composed of an TPase ssociated with diverse cellular ctivities (AAA) subunit and a regulatory subunit. Microtubule severing requires ATP hydrolysis by katanin's conserved AAA ATPase domains. Whereas other AAA ATPases form stable hexamers, we show that katanin forms only a monomer or dimers of heterodimers in solution. Katanin oligomers consistent with hexamers of heterodimers or heterododecamers were only observed for an ATP hydrolysis-deficient mutant in the presence of ATP. X-ray structures of katanin's AAA ATPase in monomeric nucleotide-free and pseudo-oligomeric ADP-bound states revealed conformational changes in the AAA subdomains that explained the structural basis for the instability of the katanin heterododecamer. We propose that the rapid dissociation of katanin AAA oligomers may lead to an autoinhibited state that prevents inappropriate microtubule severing or that cyclical disassembly into heterodimers may critically contribute to the microtubule-severing mechanism.
有丝分裂、减数分裂和发育过程中微管的重排需要katanin 的微管切割活性。katanin 是由与多种细胞 ctivities (AAA) 亚基和调节亚基相关的 TPase 组成的异源二聚体。微管切割需要katanin 的保守 AAA ATPase 结构域水解 ATP。虽然其他 AAA ATPases 形成稳定的六聚体,但我们发现 katanin 在溶液中仅形成单体或异源二聚体的二聚体。仅在存在 ATP 的情况下,对于 ATP 水解缺陷突变体,才观察到与异源二聚体或异源十二聚体的六聚体一致的 katanin 寡聚物。katanin 的 AAA ATPase 的单体核苷酸游离和拟似寡聚 ADP 结合状态的 X 射线结构揭示了 AAA 亚结构域的构象变化,解释了 katanin 异源十二聚体不稳定性的结构基础。我们提出,katanin AAA 寡聚体的快速解离可能导致自动抑制状态,从而防止不适当的微管切割,或者周期性地解聚成异源二聚体可能对微管切割机制至关重要。