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分析 CDPK1 的靶标鉴定了一个运输衔接复合物,该复合物调节 中的微线体胞吐作用。

Analysis of CDPK1 targets identifies a trafficking adaptor complex that regulates microneme exocytosis in .

机构信息

Whitehead Institute for Biomedical Research, Cambridge, United States.

Biology Department, Massachusetts Institute of Technology, Cambridge, United States.

出版信息

Elife. 2023 Nov 7;12:RP85654. doi: 10.7554/eLife.85654.

Abstract

Apicomplexan parasites use Ca-regulated exocytosis to secrete essential virulence factors from specialized organelles called micronemes. Ca-dependent protein kinases (CDPKs) are required for microneme exocytosis; however, the molecular events that regulate trafficking and fusion of micronemes with the plasma membrane remain unresolved. Here, we combine sub-minute resolution phosphoproteomics and bio-orthogonal labeling of kinase substrates in to identify 163 proteins phosphorylated in a CDPK1-dependent manner. In addition to known regulators of secretion, we identify uncharacterized targets with predicted functions across signaling, gene expression, trafficking, metabolism, and ion homeostasis. One of the CDPK1 targets is a putative HOOK activating adaptor. In other eukaryotes, HOOK homologs form the FHF complex with FTS and FHIP to activate dynein-mediated trafficking of endosomes along microtubules. We show the FHF complex is partially conserved in , consisting of HOOK, an FTS homolog, and two parasite-specific proteins (TGGT1_306920 and TGGT1_316650). CDPK1 kinase activity and HOOK are required for the rapid apical trafficking of micronemes as parasites initiate motility. Moreover, parasites lacking HOOK or FTS display impaired microneme protein secretion, leading to a block in the invasion of host cells. Taken together, our work provides a comprehensive catalog of CDPK1 targets and reveals how vesicular trafficking has been tuned to support a parasitic lifestyle.

摘要

顶复门寄生虫利用 Ca2+ 调节的胞吐作用从称为微线体的专门细胞器中分泌必需的毒力因子。Ca2+ 依赖性蛋白激酶(CDPKs)是微线体胞吐所必需的;然而,调节微线体与质膜融合的运输和融合的分子事件仍未解决。在这里,我们结合亚分钟分辨率的磷酸化蛋白质组学和生物正交标记激酶底物在 中鉴定了 163 种以 CDPK1 依赖性方式磷酸化的蛋白质。除了已知的分泌调节剂外,我们还鉴定了具有信号转导、基因表达、运输、代谢和离子稳态预测功能的未表征靶标。CDPK1 的一个靶标是一种假定的 HOOK 激活接头。在其他真核生物中,HOOK 同源物与 FTS 和 FHIP 形成 FHF 复合物,以激活沿着微管的动力蛋白介导的内体运输。我们表明,FHF 复合物在 中部分保守,由 HOOK、FTS 同源物和两种寄生虫特异性蛋白(TGGT1_306920 和 TGGT1_316650)组成。CDPK1 激酶活性和 HOOK 是寄生虫开始运动时微线体快速顶端运输所必需的。此外,缺乏 HOOK 或 FTS 的寄生虫显示出微线体蛋白分泌受损,导致宿主细胞入侵受阻。总之,我们的工作提供了 CDPK1 靶标的综合目录,并揭示了囊泡运输如何被调整以支持寄生生活方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a087/10629828/60b095ae3397/elife-85654-fig1.jpg

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