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Chemically inducible diffusion trap at cilia reveals molecular sieve-like barrier
期刊文章

Chemically inducible diffusion trap at cilia reveals molecular sieve-like barrier

Takanari Inoue, Yu-Chun Lin, Pawel Niewiadomski, Benjamin Lin, Hideki Nakamura, Siew Cheng Phua, John Jiao, Andre Levchenko, Takafumi InoueRajat Rohatgi
Nature Chemical Biology, 卷.9(7), 頁碼.437-443
07/2013
PMID: 23666116

摘要

Cell Biology Molecular Biology
Primary cilia function as specialized compartments for signal transduction. The stereotyped structure and signaling function of cilia inextricably depend on the selective segregation of molecules in cilia. However, the fundamental principles governing the access of soluble proteins to primary cilia remain unresolved. We developed a methodology termed 'chemically inducible diffusion trap at cilia' to visualize the diffusion process of a series of fluorescent proteins ranging in size from 3.2 nm to 7.9 nm into primary cilia. We found that the interior of the cilium was accessible to proteins as large as 7.9 nm. The kinetics of ciliary accumulation of this panel of proteins was exponentially limited by their Stokes radii. Quantitative modeling suggests that the diffusion barrier operates as a molecular sieve at the base of cilia. Our study presents a set of powerful, generally applicable tools for the quantitative monitoring of ciliary protein diffusion under both physiological and pathological conditions © 2013 Nature America, Inc.

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