Crystal structure of human PACRG in complex with MEIG1 reveals roles in axoneme formation and tubulin binding

人PACRG与MEIG1复合物的晶体结构揭示了其在轴丝形成和微管蛋白结合中的作用

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作者:Nimra Khan ,Dylan Pelletier ,Thomas S McAlear ,Nathalie Croteau ,Simon Veyron ,Andrew N Bayne ,Corbin Black ,Muneyoshi Ichikawa ,Ahmad Abdelzaher Zaki Khalifa ,Sami Chaaban ,Igor Kurinov ,Gary Brouhard ,Susanne Bechstedt ,Khanh Huy Bui ,Jean-François Trempe

Abstract

The Parkin co-regulated gene protein (PACRG) binds at the inner junction between doublet microtubules of the axoneme, a structure found in flagella and cilia. PACRG binds to the adaptor protein meiosis expressed gene 1 (MEIG1), but how they bind to microtubules is unknown. Here, we report the crystal structure of human PACRG in complex with MEIG1. PACRG adopts a helical repeat fold with a loop that interacts with MEIG1. Using the structure of the axonemal doublet microtubule from the protozoan Chlamydomonas reinhardtii and single-molecule fluorescence microscopy, we propose that PACRG binds to microtubules while simultaneously recruiting free tubulin to catalyze formation of the inner junction. We show that the homologous PACRG-like protein also mediates dual tubulin interactions but does not bind MEIG1. Our findings establish a framework to assess the function of the PACRG family of proteins and MEIG1 in regulating axoneme assembly. Keywords: MEIG1; PACRG; PACRGL; Parkinson; axoneme; cilia; flagella; microtubule; sperm; tubulin.

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