In this study, we analyzed intracellular functions and motile properties of neck-linker (NL) variants of the bi-directional S. cerevisiae kinesin-5 motor, Cin8. We also examined - by modeling - the configuration of H-bonds during NL docking. Decreasing the number of stabilizing H-bonds resulted in partially functional variants, as long as a conserved backbone H-bond at the N-latch position (proposed to stabilize the docked conformation of the NL) remained intact. Elimination of this conserved H-bond resulted in production of a non-functional Cin8 variant. Surprisingly, additional H-bond stabilization of the N-latch position, generated by replacement of the NL of Cin8 by sequences of the plus-end directed kinesin-5 Eg5, also produced a nonfunctional variant. In that variant, a single replacement of N-latch asparagine with glycine, as present in Cin8, eliminated the additional H-bond stabilization and rescued the functional defects. We conclude that exact N-latch stabilization during NL docking is critical for the function of bi-directional kinesin-5 Cin8.
Intracellular functions and motile properties of bi-directional kinesin-5 Cin8 are regulated by neck linker docking.
双向驱动蛋白-5 Cin8 的细胞内功能和运动特性受颈部连接子对接的调控
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作者:Goldstein-Levitin Alina, Pandey Himanshu, Allhuzaeel Kanary, Kass Itamar, Gheber Larisa
| 期刊: | Elife | 影响因子: | 6.400 |
| 时间: | 2021 | 起止号: | 2021 Aug 13; 10:e71036 |
| doi: | 10.7554/eLife.71036 | 研究方向: | 细胞生物学 |
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