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衣藻DYX1C1/PF23对于轴丝组装和内动力蛋白臂的正常形态至关重要。

Chlamydomonas DYX1C1/PF23 is essential for axonemal assembly and proper morphology of inner dynein arms.

作者信息

Yamamoto Ryosuke, Obbineni Jagan M, Alford Lea M, Ide Takahiro, Owa Mikito, Hwang Juyeon, Kon Takahide, Inaba Kazuo, James Noliyanda, King Stephen M, Ishikawa Takashi, Sale Winfield S, Dutcher Susan K

机构信息

Department of Biological Sciences, Graduate School of Science, Osaka University, Osaka, Japan.

Laboratory of Biomolecular Research, Paul Scherrer Institute, Villigen PSI, Switzerland.

出版信息

PLoS Genet. 2017 Sep 11;13(9):e1006996. doi: 10.1371/journal.pgen.1006996. eCollection 2017 Sep.

Abstract

Cytoplasmic assembly of ciliary dyneins, a process known as preassembly, requires numerous non-dynein proteins, but the identities and functions of these proteins are not fully elucidated. Here, we show that the classical Chlamydomonas motility mutant pf23 is defective in the Chlamydomonas homolog of DYX1C1. The pf23 mutant has a 494 bp deletion in the DYX1C1 gene and expresses a shorter DYX1C1 protein in the cytoplasm. Structural analyses, using cryo-ET, reveal that pf23 axonemes lack most of the inner dynein arms. Spectral counting confirms that DYX1C1 is essential for the assembly of the majority of ciliary inner dynein arms (IDA) as well as a fraction of the outer dynein arms (ODA). A C-terminal truncation of DYX1C1 shows a reduction in a subset of these ciliary IDAs. Sucrose gradients of cytoplasmic extracts show that preassembled ciliary dyneins are reduced compared to wild-type, which suggests an important role in dynein complex stability. The role of PF23/DYX1C1 remains unknown, but we suggest that DYX1C1 could provide a scaffold for macromolecular assembly.

摘要

纤毛动力蛋白的细胞质组装,即所谓的预组装过程,需要众多非动力蛋白,但这些蛋白的身份和功能尚未完全阐明。在这里,我们表明经典的衣藻运动突变体pf23在衣藻中与DYX1C1同源的蛋白存在缺陷。pf23突变体的DYX1C1基因有494 bp的缺失,并在细胞质中表达较短的DYX1C1蛋白。使用冷冻电镜断层扫描的结构分析表明,pf23轴丝缺乏大部分内动力蛋白臂。光谱计数证实,DYX1C1对于大多数纤毛内动力蛋白臂(IDA)以及一部分外动力蛋白臂(ODA)的组装至关重要。DYX1C1的C末端截短显示这些纤毛IDA的一个子集减少。细胞质提取物的蔗糖梯度分析表明,与野生型相比,预组装的纤毛动力蛋白减少,这表明其在动力蛋白复合体稳定性中起重要作用。PF23/DYX1C1的作用仍然未知,但我们认为DYX1C1可能为大分子组装提供一个支架。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e445/5608425/5ad345cbefc7/pgen.1006996.g001.jpg

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