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首页> 外文期刊>MBio >BPIFB3 Regulates Autophagy and Coxsackievirus B Replication through a Noncanonical Pathway Independent of the Core Initiation Machinery
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BPIFB3 Regulates Autophagy and Coxsackievirus B Replication through a Noncanonical Pathway Independent of the Core Initiation Machinery

机译:BPIFB3通过独立于核心启动机制的非经典途径调节自噬和柯萨奇病毒B复制。

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ABSTRACT Enteroviruses require autophagy to facilitate the formation of autophagosome (AP)-like double-membrane vesicles that provide the scaffolding for RNA replication. Here, we identify bactericidal/permeability-increasing protein (BPI) fold-containing family B, member 3 (BPIFB3) as a gene whose silencing greatly enhances coxsackievirus B (CVB) replication and induces dramatic alterations in the morphology of CVB-induced replication organelles. We show that BPIFB3 is associated with the endoplasmic reticulum (ER), and its silencing by RNA interference enhances basal levels of autophagy and promotes increased autophagy during CVB replication. Conversely, overexpression of BPIFB3 inhibits CVB replication, dramatically alters the morphology of LC3B-positive vesicles, and suppresses autophagy in response to rapamaycin. In addition, we found that, whereas silencing of core autophagy components associated with the initiation of APs in control cells suppressed CVB replication, silencing of these same components had no effect on CVB-induced autophagy or viral replication in cells transfected with BPIFB3 small interfering RNA. Based on these results, taken together, this study reports on a previously uncharacterized regulator of enterovirus infection that controls replication through a noncanonical pathway independent from the core autophagy initiation machinery. IMPORTANCE Coxsackievirus B (CVB) infections are commonly associated with dilated cardiomyopathy, a condition that accounts for nearly half of all heart transplants annually. During infection, CVB co-opts a cellular pathway, termed autophagy, to provide the membranes necessary for its replication. Autophagy is an evolutionarily conserved process by which cells ingest damaged organelles as a means of maintaining cell homeostasis. Here, we report on a novel regulator of autophagy, bactericidal/permeability-increasing protein (BPI) fold-containing family B, member 3 (BPIFB3), whose expression functions to restrict CVB replication by suppressing key steps in the authophagic process. We show that loss of BPIFB3 expression greatly enhances CVB replication while having no effect on replication of poliovirus, a closely related virus. Our results thus identify a novel host cell therapeutic target whose function could be targeted to alter CVB replication.
机译:摘要肠病毒需要自噬以促进自噬体(AP)样双膜囊泡的形成,该膜为RNA复制提供了支架。在这里,我们确定杀菌/增加通透性的蛋白质(BPI)折叠家族B,成员3(BPIFB3)为一个基因,该基因的沉默大大增强了柯萨奇病毒B(CVB)的复制,并在CVB诱导的复制细胞器的形态上引起了巨大的改变。 。我们显示BPIFB3与内质网(ER)相关联,并且其被RNA干扰沉默会增强自噬的基础水平,并在CVB复制过程中促进自噬的增加。相反,BPIFB3的过表达抑制CVB复制,显着改变LC3B阳性囊泡的形态,并抑制对雷帕霉素的自噬。此外,我们发现,与控制细胞中AP起始相关的核心自噬成分的沉默抑制了CVB复制,而这些相同成分的沉默对BPIFB3小干扰RNA转染的细胞中CVB诱导的自噬或病毒复制没有影响。 。基于这些结果,本研究报告了以前未知的肠道病毒感染调节剂,该调节剂通过独立于核心自噬启动机制的非经典途径控制复制。重要事项柯萨奇B型病毒(CVB)感染通常与扩张型心肌病相关,这种疾病每年约占所有心脏移植的一半。在感染期间,CVB选择一种称为自噬的细胞途径来提供其复制所必需的膜。自噬是一种进化上保守的过程,细胞通过该过程摄取受损的细胞器,以维持细胞稳态。在这里,我们报告了一种新型的自噬调节剂,即具有杀菌/通透性的蛋白质(BPI)折叠家族B,成员3(BPIFB3),其表达功能通过抑制自噬过程中的关键步骤来限制CVB复制。我们显示,BPIFB3表达的丧失大大增强了CVB复制,而对脊髓灰质炎病毒(一种密切相关的病毒)的复制没有影响。因此,我们的结果确定了一种新型的宿主细胞治疗靶标,其功能可能旨在改变CVB复制。

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