通过定量磷蛋白组分析揭示犬新孢子虫cgmp依赖性蛋白激酶对钙通量和输出功能的影响。

IF 5.2 1区 生物学 Q1 BIOLOGY
Xianmei Wang, Kun Guo, Zhili Shan, Zhu Ying, Zifu Zhu, Shiman Yang, Na Yang, Qun Liu, Lifang Wang, Jing Liu
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引用次数: 0

摘要

犬新孢子虫(Neospora caninum)是一种与怀孕牛流产和犬运动神经紊乱有关的病原体,构成了重大威胁。环gmp依赖性蛋白激酶(PKG)在顶复体寄生虫中起中心信号转导枢纽的作用。然而,PKG在犬链球菌中尚未被表征,PKG控制的靶点和途径尚不清楚。利用微型生长素诱导的降解系统(mAID),我们敲除了犬棘球蚴(N. caninum)中的PKG,证明了它在速殖子入侵和离开宿主细胞中不可或缺的作用。PKG通过提高细胞内Ca2+水平([Ca2+]i)促进微素分泌并增强速殖子的滑行运动。磷酸化蛋白质组学鉴定出1125个蛋白是PKG的潜在下游靶点,在PKG抑制剂MBP146-78处理后,磷酸化水平显著降低。这些蛋白参与信号转导、转录调节、脂质转运和代谢、囊泡转运和离子转运。此外,CACNAP是一种钙通道相关蛋白,可促进钙在质膜的内流,在犬链球菌的出口过程中起支持作用。这些发现强调了PKG及其下游分子在调节出口中的重要性,为[Ca2+]i激活的机制提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unveiling the impact of cGMP-dependent protein kinase of Neospora caninum on calcium fluxes and egress functions through quantitative phosphoproteome analysis.

Neospora caninum, a pathogen associated with abortion in pregnant cattle and motor nerve disorders in dogs, poses a substantial threat. Cyclic GMP-dependent protein kinase (PKG) functions as a central signal transduction hub in apicomplexan parasites. However, PKG has not been characterized in N. caninum, and its targets and pathways controlled by PKG remain unknown. Using a mini auxin-inducible degron system (mAID), we knocked down PKG in N. caninum, demonstrating its indispensable role in tachyzoite invasion and egress from host cells. PKG promotes microneme secretion and enhances tachyzoite gliding motility by elevating intracellular Ca2+ levels ([Ca2+]i). Phosphoproteomics identified 1125 proteins as potential downstream targets of PKG, showing significantly reduced phosphorylation after treatment with the PKG inhibitor MBP146-78. These proteins are involved in signal transduction, transcriptional regulation, lipid transport and metabolism, vesicle transport, and ion transport. Additionally, CACNAP, a calcium channel-associated protein that facilitates calcium influx at the plasma membrane, plays a supportive role in the egress process of N. caninum. These findings underscore the importance of PKG and its downstream molecules in regulating egress, offering novel insights into the mechanisms underlying the activation of [Ca2+]i.

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来源期刊
Communications Biology
Communications Biology Medicine-Medicine (miscellaneous)
CiteScore
8.60
自引率
1.70%
发文量
1233
审稿时长
13 weeks
期刊介绍: Communications Biology is an open access journal from Nature Research publishing high-quality research, reviews and commentary in all areas of the biological sciences. Research papers published by the journal represent significant advances bringing new biological insight to a specialized area of research.
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