A molecular ruler determines the repeat length in eukaryotic cilia and flagella

来源 :The 9th Asian Biophysics Association Symposium (ABA2015)(第九届 | 被引量 : 0次 | 上传用户:z675083421
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Existence of cellular structures with specific size raises a fundamental question in biology: How do cells measure length? One conceptual answer to this question is by a molecular ruler, but examples of such rulers in eukaryotes are lacking.In this work, we identified a molecular ruler in eukaryotic cilia and flagella.Using cryo-electron tomography, we found that FAP59 and FAP172 form a 96-nanometer (nm)-long complex in Chlamydomonas flagella and that the absence of the complex disrupted 96-nm repeats of axonemes.Furthermore, lengthening of the FAP59/172 complex by domain duplication resulted in extension of the repeats up to 128 nm, as well as duplication of specific axonemal components.Thus, the FAP59/172 complex is the molecular ruler that determines the 96-nm repeat length and arrangements of components in cilia and flagella.
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