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登革热病毒非结构蛋白 3 通过损害复合物 I 的功能来抑制线粒体呼吸。

Dengue virus non-structural protein 3 inhibits mitochondrial respiration by impairing complex I function.

机构信息

Instituto de Bioquímica Médica Leopoldo de Meis, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

Instituto de Microbiologia Paulo de Góes, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.

出版信息

mSphere. 2024 Jul 30;9(7):e0040624. doi: 10.1128/msphere.00406-24. Epub 2024 Jul 9.

Abstract

UNLABELLED

Dengue virus (DENV) infection is known to affect host cell metabolism, but the molecular players involved are still poorly known. Using a proteomics approach, we identified six DENV proteins associated with mitochondria isolated from infected hepatocytes, and most of the peptides identified were from NS3. We also found an at least twofold decrease of several electron transport system (ETS) host proteins. Thus, we investigated whether NS3 could modulate the ETS function by incubating recombinant DENV NS3 constructs in mitochondria isolated from mouse liver. We found that NS3pro (NS3 protease domain), but not the correspondent catalytically inactive mutant (NS3proS135A), impairs complex I (CI)-dependent NADH:ubiquinone oxidoreductase activity, but not the activities of complexes II, III, IV, or V. Accordingly, using high-resolution respirometry, we found that both NS3pro and full-length NS3 decrease the respiratory rates associated with malate/pyruvate oxidation in mitochondria. The NS3-induced impairment in mitochondrial respiration occurs without altering either leak respiration or mitochondria's capacity to maintain membrane potential, suggesting that NS3 does not deeply affect mitochondrial integrity. Remarkably, CI activity is also inhibited in DENV-infected cells, supporting that the NS3 effects observed in isolated mitochondria may be relevant in the context of the infection. Finally, analyses revealed the presence of potential NS3 cleavage sites in 17 subunits of mouse CI and 16 subunits of human CI, most of them located on the CI surface, suggesting that CI is prone to undergo proteolysis by NS3. Our findings suggest that DENV NS3 can modulate mitochondrial bioenergetics by directly affecting CI function.

IMPORTANCE

Dengue virus (DENV) infection is a major public health problem worldwide, affecting about 400 million people yearly. Despite its importance, many molecular aspects of dengue pathogenesis remain poorly known. For several years, our group has been investigating DENV-induced metabolic alterations in the host cells, focusing on the bioenergetics of mitochondrial respiration. The results of the present study reveal that the DENV non-structural protein 3 (NS3) is found in the mitochondria of infected cells, impairing mitochondrial respiration by directly targeting one of the components of the electron transport system, the respiratory complex I (CI). NS3 acts as the viral protease during the DENV replication cycle, and its proteolytic activity seems necessary for inhibiting CI function. Our findings uncover new nuances of DENV-induced metabolic alterations, highlighting NS3 as an important player in the modulation of mitochondria function during infection.

摘要

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登革热病毒(DENV)感染已知会影响宿主细胞的新陈代谢,但涉及的分子参与者仍知之甚少。我们使用蛋白质组学方法,鉴定了从感染的肝细胞中分离的线粒体中与 DENV 相关的六种蛋白质,并且鉴定的大多数肽都来自 NS3。我们还发现几种电子传递系统(ETS)宿主蛋白的至少两倍减少。因此,我们通过在从鼠肝分离的线粒体中孵育重组 DENV NS3 构建体来研究 NS3 是否可以调节 ETS 功能。我们发现 NS3pro(NS3 蛋白酶结构域),而不是相应的催化失活突变体(NS3proS135A),可损害依赖于复合物 I(CI)的 NADH:泛醌氧化还原酶活性,但不损害复合物 II、III、IV 或 V 的活性。相应地,使用高分辨率呼吸计,我们发现 NS3pro 和全长 NS3 均降低了与苹果酸/丙酮酸氧化相关的线粒体呼吸率。NS3 诱导的线粒体呼吸受损不会改变漏呼吸或线粒体维持膜电位的能力,表明 NS3 不会深度影响线粒体的完整性。值得注意的是,在感染 DENV 的细胞中也抑制了 CI 活性,这支持了在感染背景下观察到的 NS3 作用在分离的线粒体中可能是相关的。最后,分析表明,在小鼠 CI 的 17 个亚基和人 CI 的 16 个亚基中存在潜在的 NS3 切割位点,其中大多数位于 CI 表面,表明 CI 容易被 NS3 进行蛋白水解。我们的研究结果表明,DENV NS3 可以通过直接影响 CI 功能来调节线粒体生物能学。

意义

登革热病毒(DENV)感染是全球一个主要的公共卫生问题,每年影响约 4 亿人。尽管其重要性,但登革热发病机制的许多分子方面仍知之甚少。多年来,我们的小组一直在研究 DENV 诱导的宿主细胞代谢改变,重点是线粒体呼吸的生物能学。本研究的结果表明,登革热病毒非结构蛋白 3(NS3)存在于感染细胞的线粒体中,通过直接靶向电子传递系统的一个组成部分,即呼吸复合物 I(CI),损害线粒体呼吸。NS3 在 DENV 复制周期中作为病毒蛋白酶发挥作用,其蛋白水解活性似乎对于抑制 CI 功能是必需的。我们的研究结果揭示了 DENV 诱导的代谢改变的新细节,强调 NS3 是感染期间调节线粒体功能的重要参与者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/902b/11288018/d8d38be4df10/msphere.00406-24.f001.jpg

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