School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.
International Center for Genetic Engineering and Biotechnology, New Delhi, India.
Front Cell Infect Microbiol. 2020 Sep 25;10:566726. doi: 10.3389/fcimb.2020.566726. eCollection 2020.
Second messenger signaling controls a surprisingly diverse range of processes in several eukaryotic pathogens. Molecular machinery and pathways involving these messengers thus hold tremendous opportunities for therapeutic interventions. Relative to Ca signaling, the knowledge of a crucial second messenger cyclic AMP (cAMP) and its signaling pathway is very scant in the intestinal parasite . In the current study, mining the available genomic resources, we have for the first time identified the cAMP signal transduction pathway of . Three heptahelical proteins with variable G-protein-coupled receptor domains, heterotrimeric G-proteins (Gα, Gβ, and Gγ subunits), soluble adenylyl cyclase, cyclase-associated protein, and enzyme carbonic anhydrase were identified in its genome. We could also identify several putative candidate genes for cAMP downstream effectors such as protein kinase A, A-kinase anchoring proteins, and exchange protein directly activated by the cAMP pathway. Using specific inhibitors against key identified targets, we could observe changes in the intracellular cAMP levels as well as defect in the rate of phagocytosis of red blood cells by the parasite . We thus strongly believe that characterization of some of these unexplored crucial signaling determinants will provide a paradigm shift in understanding the pathogenicity of this organism.
第二信使信号转导控制着几种真核病原体中令人惊讶的多样化过程。因此,涉及这些信使的分子机制和途径为治疗干预提供了巨大的机会。与 Ca 信号相比,肠道寄生虫中环状 AMP(cAMP)及其信号通路的关键第二信使的知识非常匮乏。在本研究中,通过挖掘可用的基因组资源,我们首次鉴定了肠道寄生虫的 cAMP 信号转导途径。在其基因组中鉴定了三个具有可变 G 蛋白偶联受体结构域的七螺旋蛋白、三聚体 G 蛋白(Gα、Gβ 和 Gγ 亚基)、可溶性腺苷酸环化酶、环化酶相关蛋白和酶碳酸酐酶。我们还可以鉴定几种 cAMP 下游效应物的推定候选基因,如蛋白激酶 A、A-激酶锚定蛋白和 cAMP 通路直接激活的交换蛋白。使用针对关键鉴定靶点的特异性抑制剂,我们可以观察到寄生虫细胞内 cAMP 水平的变化以及红细胞吞噬率的缺陷。因此,我们坚信,对一些未被探索的关键信号决定因素的特征描述将为理解该生物体的致病性提供范式转变。