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弓形虫微线体分泌涉及从肌醇1,4,5 -三磷酸(IP(3))/兰尼碱敏感储存库释放细胞内钙离子。

Toxoplasma gondii microneme secretion involves intracellular Ca(2+) release from inositol 1,4,5-triphosphate (IP(3))/ryanodine-sensitive stores.

作者信息

Lovett Jennie L, Marchesini Norma, Moreno Silvia N J, Sibley L David

机构信息

Department of Molecular Microbiology, Washington University School of Medicine, St. Louis, Missouri 63110, USA.

出版信息

J Biol Chem. 2002 Jul 19;277(29):25870-6. doi: 10.1074/jbc.M202553200. Epub 2002 May 13.

Abstract

Calcium-mediated microneme secretion in Toxoplasma gondii is stimulated by contact with host cells, resulting in the discharge of adhesins that mediate attachment. The intracellular source of calcium and the signaling pathway(s) triggering release have not been characterized, prompting our search for mediators of calcium signaling and microneme secretion in T. gondii. We identified two stimuli of microneme secretion, ryanodine and caffeine, which enhanced release of calcium from parasite intracellular stores. Ethanol, a previously characterized trigger of microneme secretion, stimulated an increase in parasite inositol 1,4,5-triphosphate, implying that this second messenger may mediate intracellular calcium release. Consistent with this observation, xestospongin C, an inositol 1,4,5-triphosphate receptor antagonist, inhibited microneme secretion and blocked parasite attachment and invasion of host cells. Collectively, these results suggest that T. gondii possess an intracellular calcium release channel with properties of the inositol 1,4,5-triphosphate/ryanodine receptor superfamily. Intracellular calcium channels, previously studied almost exclusively in multicellular animals, appear to also be critical to the control of parasite calcium during the initial steps of host cell entry.

摘要

刚地弓形虫中钙介导的微线体分泌受与宿主细胞接触的刺激,导致介导附着的黏附素释放。钙的细胞内来源以及触发释放的信号通路尚未明确,这促使我们寻找刚地弓形虫中钙信号传导和微线体分泌的介质。我们鉴定出两种微线体分泌刺激物,即ryanodine和咖啡因,它们增强了寄生虫细胞内储存钙的释放。乙醇是先前已鉴定出的微线体分泌触发物,它刺激寄生虫肌醇1,4,5-三磷酸增加,这意味着这种第二信使可能介导细胞内钙释放。与这一观察结果一致,肌醇1,4,5-三磷酸受体拮抗剂xestospongin C抑制了微线体分泌,并阻断了寄生虫对宿主细胞附着和侵袭。总体而言,这些结果表明刚地弓形虫拥有一种具有肌醇1,4,5-三磷酸/ryanodine受体超家族特性的细胞内钙释放通道。细胞内钙通道以前几乎仅在多细胞动物中进行研究,现在看来在宿主细胞进入的初始步骤中对寄生虫钙的控制也至关重要。

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