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线粒体过氧化物还原酶在婴儿利什曼原虫中作为关键的伴侣蛋白储存库发挥作用。

Mitochondrial peroxiredoxin functions as crucial chaperone reservoir in Leishmania infantum.

作者信息

Teixeira Filipa, Castro Helena, Cruz Tânia, Tse Eric, Koldewey Philipp, Southworth Daniel R, Tomás Ana M, Jakob Ursula

机构信息

Instituto de Investigação e Inovação em Saúde, Universidade do Porto, 4200 Porto, Portugal; IBMC - Instituto de Biologia Molecular e Celular, Universidade do Porto, 4150-180 Porto, Portugal; ICBAS - Instituto de Ciências Biomédicas Abel Salazar, Universidade do Porto, 4050-313 Porto, Portugal; Department of Molecular, Cellular and Developmental Biology, University of Michigan, Ann Arbor, MI 48109;

Instituto de Investigação e Inovação em Saúde, Universidade do Porto, 4200 Porto, Portugal; IBMC - Instituto de Biologia Molecular e Celular, Universidade do Porto, 4150-180 Porto, Portugal;

出版信息

Proc Natl Acad Sci U S A. 2015 Feb 17;112(7):E616-24. doi: 10.1073/pnas.1419682112. Epub 2015 Feb 2.

Abstract

Cytosolic eukaryotic 2-Cys-peroxiredoxins have been widely reported to act as dual-function proteins, either detoxifying reactive oxygen species or acting as chaperones to prevent protein aggregation. Several stimuli, including peroxide-mediated sulfinic acid formation at the active site cysteine, have been proposed to trigger the chaperone activity. However, the mechanism underlying this activation and the extent to which the chaperone function is crucial under physiological conditions in vivo remained unknown. Here we demonstrate that in the vector-borne protozoan parasite Leishmania infantum, mitochondrial peroxiredoxin (Prx) exerts intrinsic ATP-independent chaperone activity, protecting a wide variety of different proteins against heat stress-mediated unfolding in vitro and in vivo. Activation of the chaperone function appears to be induced by temperature-mediated restructuring of the reduced decamers, promoting binding of unfolding client proteins in the center of Prx's ringlike structure. Client proteins are maintained in a folding-competent conformation until restoration of nonstress conditions, upon which they are released and transferred to ATP-dependent chaperones for refolding. Interference with client binding impairs parasite infectivity, providing compelling evidence for the in vivo importance of Prx's chaperone function. Our results suggest that reduced Prx provides a mitochondrial chaperone reservoir, which allows L. infantum to deal successfully with protein unfolding conditions during the transition from insect to the mammalian hosts and to generate viable parasites capable of perpetuating infection.

摘要

胞质真核双半胱氨酸过氧化物酶已被广泛报道具有双重功能,既可以清除活性氧,也可以作为伴侣蛋白防止蛋白质聚集。包括在活性位点半胱氨酸处过氧化物介导的亚磺酸形成在内的几种刺激因素,被认为可触发伴侣蛋白活性。然而,这种激活的潜在机制以及伴侣蛋白功能在体内生理条件下的关键程度仍不清楚。在这里,我们证明在媒介传播的原生动物寄生虫婴儿利什曼原虫中,线粒体过氧化物酶(Prx)发挥内在的不依赖ATP的伴侣蛋白活性,在体外和体内保护多种不同蛋白质免受热应激介导的解折叠。伴侣蛋白功能的激活似乎是由温度介导的还原十聚体的重组诱导的,促进了解折叠的客户蛋白在Prx环状结构中心的结合。客户蛋白保持在具有折叠能力的构象中,直到非应激条件恢复,此时它们被释放并转移到依赖ATP的伴侣蛋白进行重新折叠。干扰客户蛋白结合会损害寄生虫的感染性,这为Prx伴侣蛋白功能在体内的重要性提供了有力证据。我们的结果表明,还原型Prx提供了一个线粒体伴侣蛋白库,使婴儿利什曼原虫能够在从昆虫宿主过渡到哺乳动物宿主的过程中成功应对蛋白质解折叠情况,并产生能够持续感染的活寄生虫。

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