Cao Xiaofu, Huang Shiying, Wagner Mateusz M, Cho Yuan-Ting, Chiu Din-Chi, Wartchow Krista M, Lazarian Artur, McIntire Laura Beth, Smolka Marcus B, Baskin Jeremy M
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York, United States, 14853.
Weill Institute for Cell and Molecular Biology, Cornell University, Ithaca, New York, United States, 14853.
bioRxiv. 2024 Jun 6:2024.06.05.597552. doi: 10.1101/2024.06.05.597552.
Tools for acute manipulation of protein localization enable elucidation of spatiotemporally defined functions, but their reliance on exogenous triggers can interfere with cell physiology. This limitation is particularly apparent for studying mitosis, whose highly choreographed events are sensitive to perturbations. Here we exploit the serendipitous discovery of a phosphorylation-controlled, cell cycle-dependent localization change of the adaptor protein PLEKHA5 to develop a system for mitosis-specific protein recruitment to the plasma membrane that requires no exogenous stimulus. Mitosis-enabled Anchor-away/Recruiter System (MARS) comprises an engineered, 15-kDa module derived from PLEKHA5 capable of recruiting functional protein cargoes to the plasma membrane during mitosis, either through direct fusion or via GFP-GFP nanobody interaction. Applications of MARS include both knock sideways to rapidly extract proteins from their native localizations during mitosis and conditional recruitment of lipid-metabolizing enzymes for mitosis-selective editing of plasma membrane lipid content, without the need for exogenous triggers or perturbative synchronization methods.
用于急性操纵蛋白质定位的工具能够阐明时空定义的功能,但其对外源触发因素的依赖可能会干扰细胞生理学。这种局限性在研究有丝分裂时尤为明显,因为其高度编排的事件对扰动很敏感。在这里,我们利用偶然发现的衔接蛋白PLEKHA5的磷酸化控制、细胞周期依赖性定位变化,开发了一种用于有丝分裂特异性蛋白质募集到质膜的系统,该系统不需要外源刺激。有丝分裂启用的锚定去除/招募系统(MARS)包括一个源自PLEKHA5的工程化15 kDa模块,该模块能够在有丝分裂期间通过直接融合或通过GFP-GFP纳米抗体相互作用将功能性蛋白质货物募集到质膜。MARS的应用包括在有丝分裂期间快速将蛋白质从其天然定位中提取出来的侧向敲除,以及有丝分裂选择性编辑质膜脂质含量的脂质代谢酶的条件性募集,而无需外源触发因素或扰动同步方法。