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钙依赖蛋白激酶调控莱茵衣藻鞭毛生物发生。

Regulation of flagellar biogenesis by a calcium dependent protein kinase in Chlamydomonas reinhardtii.

机构信息

Ministry of Environment Key Laboratory of Protein Science, School of Life Sciences, Tsinghua University, Beijing, China.

出版信息

PLoS One. 2013 Jul 25;8(7):e69902. doi: 10.1371/journal.pone.0069902. Print 2013.

Abstract

Chlamydomonas reinhardtii, a bi-flagellated green alga, is a model organism for studies of flagella or cilia related activities including cilia-based signaling, flagellar motility and flagellar biogenesis. Calcium has been shown to be a key regulator of these cellular processes whereas the signaling pathways linking calcium to these cellular functions are less understood. Calcium-dependent protein kinases (CDPKs), which are present in plants but not in animals, are also present in ciliated microorganisms which led us to examine their possible functions and mechanisms in flagellar related activities. By in silico analysis of Chlamydomonas genome we have identified 14 CDPKs and studied one of the flagellar localized CDPKs--CrCDPK3. CrCDPK3 was a protein of 485 amino acids and predicted to have a protein kinase domain at the N-terminus and four EF-hand motifs at the C-terminus. In flagella, CrCDPK3 was exclusively localized in the membrane matrix fraction and formed an unknown 20 S protein complex. Knockdown of CrCDPK3 expression by using artificial microRNA did not affect flagellar motility as well as flagellar adhesion and mating. Though flagellar shortening induced by treatment with sucrose or sodium pyrophosphate was not affected in RNAi strains, CrCDPK3 increased in the flagella, and pre-formed protein complex was disrupted. During flagellar regeneration, CrCDPK3 also increased in the flagella. When extracellular calcium was lowered to certain range by the addition of EGTA after deflagellation, flagellar regeneration was severely affected in RNAi cells compared with wild type cells. In addition, during flagellar elongation induced by LiCl, RNAi cells exhibited early onset of bulbed flagella. This work expands new functions of CDPKs in flagellar activities by showing involvement of CrCDPK3 in flagellar biogenesis in Chlamydomonas.

摘要

莱茵衣藻(Chlamydomonas reinhardtii)是一种双鞭毛绿藻,是研究鞭毛或纤毛相关活动的模式生物,包括纤毛信号转导、鞭毛运动和鞭毛发生。钙已被证明是这些细胞过程的关键调节剂,而将钙与这些细胞功能联系起来的信号通路则知之甚少。钙依赖性蛋白激酶(CDPKs)存在于植物中,但不存在于动物中,也存在于有纤毛的微生物中,这促使我们研究它们在鞭毛相关活动中的可能功能和机制。通过对衣藻基因组的计算机分析,我们鉴定出 14 种 CDPKs,并研究了一种鞭毛定位的 CDPK——CrCDPK3。CrCDPK3 是一种 485 个氨基酸的蛋白质,预测在 N 端具有蛋白激酶结构域,在 C 端具有四个 EF 手模体。在鞭毛中,CrCDPK3 仅定位于膜基质部分,并形成一个未知的 20S 蛋白复合物。利用人工 microRNA 敲低 CrCDPK3 的表达并不影响鞭毛运动以及鞭毛黏附和交配。虽然用蔗糖或焦磷酸钠处理后诱导的鞭毛缩短在 RNAi 株系中不受影响,但 CrCDPK3 在鞭毛中增加,且预先形成的蛋白复合物被破坏。在鞭毛再生过程中,CrCDPK3 也在鞭毛中增加。在用 EGTA 降低细胞外钙浓度后,RNAi 细胞的鞭毛再生在去鞭毛后受到严重影响,与野生型细胞相比。此外,在用 LiCl 诱导鞭毛伸长时,RNAi 细胞表现出早期出现泡状鞭毛。这项工作通过显示 CrCDPK3 参与衣藻的鞭毛发生,扩展了 CDPKs 在鞭毛活动中的新功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/515f/3723818/376e0a3d4756/pone.0069902.g001.jpg

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