Biomedical Research Institute, Korea Institute of Science and Technology, Seoul, 02792, Republic of Korea.
Convergence Research Center for Diagnosis, Treatment and Care System of Dementia, Korea Institute of Science and Technology, Seoul, Republic of Korea.
Cell Rep. 2019 Jan 29;26(5):1357-1367.e5. doi: 10.1016/j.celrep.2019.01.020.
Katanin was the first microtubule (MT)-severing enzyme discovered, but how katanin executes MT severing remains poorly understood. Here, we report X-ray crystal structures of the apo and ATPγS-bound states of the catalytic AAA domain of human katanin p60 at 3.0 and 2.9 Å resolution, respectively. Comparison of the two structures reveals conformational changes induced by ATP binding and how such changes ensure hexamer stability. Moreover, we uncover structural details of pore loops (PLs) and show that Arg283, a residue unique to katanin among MT-severing enzymes, protrudes from PL1 and lines the entry of the catalytic pore. Functional studies suggest that PL1 and Arg283 play essential roles in the recognition and remodeling of the glutamylated, C-terminal tubulin tail and regulation of axon growth. In addition, domain-swapping experiments in katanin and spastin suggest that the non-homologous N-terminal region, which contains the MT-interacting and trafficking domain and a linker, confers specificity to the severing process.
卡坦丁是第一个被发现的微管(MT)切割酶,但卡坦丁如何执行 MT 切割仍知之甚少。在这里,我们报告了人源卡坦丁 p60 的催化 AAA 结构域在无配体和 ATPγS 结合状态下的 X 射线晶体结构,分辨率分别为 3.0 和 2.9Å。比较这两个结构揭示了 ATP 结合诱导的构象变化,以及这种变化如何确保六聚体的稳定性。此外,我们揭示了孔环(PL)的结构细节,并表明天冬氨酸 283 是卡坦丁在 MT 切割酶中独有的残基,从 PL1 突出并排列在催化孔的入口处。功能研究表明,PL1 和 Arg283 在识别和重塑谷氨酸化的 C 末端微管尾部以及调节轴突生长中发挥重要作用。此外,在卡坦丁和痉挛蛋白中的结构域交换实验表明,包含 MT 相互作用和运输结构域以及接头的非同源 N 末端区域赋予了切割过程的特异性。