Laboratory of Biomolecular Research, Division of Biology and Chemistry, Paul Scherrer Institut, 5232 Villigen PSI, Switzerland.
Institute of Biochemistry, ETH Zürich, 8049 Zürich, Switzerland.
Structure. 2018 Apr 3;26(4):607-618.e4. doi: 10.1016/j.str.2018.03.003. Epub 2018 Mar 22.
In budding yeast, the microtubule plus-end tracking proteins Bik1 (CLIP-170) and Bim1 (EB1) form a complex that interacts with partners involved in spindle positioning, including Stu2 and Kar9. Here, we show that the CAP-Gly and coiled-coil domains of Bik1 interact with the C-terminal ETF peptide of Bim1 and the C-terminal tail region of Stu2, respectively. The crystal structures of the CAP-Gly domain of Bik1 (Bik1CG) alone and in complex with an ETF peptide revealed unique, functionally relevant CAP-Gly elements, establishing Bik1CG as a specific C-terminal phenylalanine recognition domain. Unlike the mammalian CLIP-170-EB1 complex, Bik1-Bim1 forms ternary complexes with the EB1-binding motifs SxIP and LxxPTPh, which are present in diverse proteins, including Kar9. Perturbation of the Bik1-Bim1 interaction in vivo affected Bik1 localization and astral microtubule length. Our results provide insight into the role of the Bik1-Bim1 interaction for cell division, and demonstrate that the CLIP-170-EB1 module is evolutionarily flexible.
在芽殖酵母中,微管正极追踪蛋白 Bik1(CLIP-170)和 Bim1(EB1)形成一个复合物,与参与纺锤体定位的伙伴相互作用,包括 Stu2 和 Kar9。在这里,我们表明 Bik1 的 CAP-Gly 和卷曲螺旋结构域分别与 Bim1 的 C 端 ETF 肽和 Stu2 的 C 端尾部区域相互作用。Bik1 的 CAP-Gly 结构域(Bik1CG)单独和与 ETF 肽形成复合物的晶体结构揭示了独特的、功能相关的 CAP-Gly 元件,将 Bik1CG 确立为特定的 C 端苯丙氨酸识别结构域。与哺乳动物的 CLIP-170-EB1 复合物不同,Bik1-Bim1 与存在于多种蛋白质中的 EB1 结合基序 SxIP 和 LxxPTPh 形成三元复合物,包括 Kar9。体内 Bik1-Bim1 相互作用的破坏影响了 Bik1 的定位和星体微管的长度。我们的结果提供了对 Bik1-Bim1 相互作用在细胞分裂中的作用的深入了解,并证明了 CLIP-170-EB1 模块在进化上是灵活的。