Kimberly D Erickson, Erika S Langsfeld, Alexandra Holland, Christopher C Ebmeier, Robert L Garcea
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Several novel MuPyV DNA interactors were identified on newly synthesized viral DNA (vDNA), including MCM complex members, DNA primase, DNA polymerase alpha, DNA ligase, and replication factor C. Though displaying partial overlap, the host and viral proteins bound to MuPyV DNA 2 hours post-synthesis lacked many of the replication proteins found on newly synthesized vDNA. These data help distinguish between the host factors critical for MuPyV DNA replication and those involved in downstream processing.IMPORTANCEPolyomaviruses are the causative agents of serious diseases in humans, including progressive multifocal leukoencephalopathy (PML), BK virus nephropathy, and Merkel cell carcinoma. The exact mechanisms by which the virus replicates, and which host cell proteins are required, are incompletely characterized. Identifying the host proteins necessary for efficient viral replication in the cell may reveal targets for downstream targets that may suppress viral replication <i>in vivo</i>.</p>","PeriodicalId":17583,"journal":{"name":"Journal of Virology","volume":" ","pages":"e0079024"},"PeriodicalIF":4.0000,"publicationDate":"2024-11-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11575236/pdf/","citationCount":"0","resultStr":"{\"title\":\"Proteome profiling of polyomavirus nuclear replication centers using iPOND.\",\"authors\":\"Kimberly D Erickson, Erika S Langsfeld, Alexandra Holland, Christopher C Ebmeier, Robert L Garcea\",\"doi\":\"10.1128/jvi.00790-24\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p>Polyomaviruses (PyVs) cause diverse diseases in a variety of mammalian hosts. During the life cycle, PyVs recruit nuclear host factors to viral genomes to facilitate replication and transcription. While host factors involved in DNA replication, DNA damage sensing and repair, and cell cycle regulation have been observed to bind PyV DNA, the complete set of viral and host proteins comprising the PyV replisome remains incompletely characterized. Here, the iPOND-MS technique (Isolation of Proteins on Nascent DNA coupled with Mass Spectrometry) was used to identify the proteome bound to murine PyV (MuPyV) DNA immediately following synthesis and 2 hours post-synthesis. Several novel MuPyV DNA interactors were identified on newly synthesized viral DNA (vDNA), including MCM complex members, DNA primase, DNA polymerase alpha, DNA ligase, and replication factor C. Though displaying partial overlap, the host and viral proteins bound to MuPyV DNA 2 hours post-synthesis lacked many of the replication proteins found on newly synthesized vDNA. These data help distinguish between the host factors critical for MuPyV DNA replication and those involved in downstream processing.IMPORTANCEPolyomaviruses are the causative agents of serious diseases in humans, including progressive multifocal leukoencephalopathy (PML), BK virus nephropathy, and Merkel cell carcinoma. The exact mechanisms by which the virus replicates, and which host cell proteins are required, are incompletely characterized. 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引用次数: 0
摘要
多瘤病毒(PyVs)会导致多种哺乳动物宿主患上各种疾病。在生命周期中,PyVs 将核宿主因子招募到病毒基因组上,以促进复制和转录。虽然已观察到参与 DNA 复制、DNA 损伤感应和修复以及细胞周期调控的宿主因子与 PyV DNA 结合,但组成 PyV 复制体的整套病毒和宿主蛋白质仍未完全定性。本文采用 iPOND-MS 技术(新生 DNA 蛋白质分离与质谱联用技术)鉴定了合成后立即和合成后 2 小时与小鼠 PyV(MuPyV)DNA 结合的蛋白质组。在新合成的病毒 DNA(vDNA)上发现了几种新的 MuPyV DNA 相互作用因子,包括 MCM 复合体成员、DNA 引物酶、DNA 聚合酶 alpha、DNA 连接酶和复制因子 C。尽管显示出部分重叠,但合成后 2 小时与 MuPyV DNA 结合的宿主和病毒蛋白缺乏在新合成的 vDNA 上发现的许多复制蛋白。这些数据有助于区分对 MuPyV DNA 复制至关重要的宿主因子和参与下游处理的宿主因子。重要意义多瘤病毒是人类严重疾病的致病因子,包括进行性多灶性白质脑病(PML)、BK 病毒肾病和梅克尔细胞癌。病毒复制的确切机制以及所需的宿主细胞蛋白尚未完全确定。确定病毒在细胞中有效复制所需的宿主蛋白,可能会发现可抑制病毒体内复制的下游靶标。
Proteome profiling of polyomavirus nuclear replication centers using iPOND.
Polyomaviruses (PyVs) cause diverse diseases in a variety of mammalian hosts. During the life cycle, PyVs recruit nuclear host factors to viral genomes to facilitate replication and transcription. While host factors involved in DNA replication, DNA damage sensing and repair, and cell cycle regulation have been observed to bind PyV DNA, the complete set of viral and host proteins comprising the PyV replisome remains incompletely characterized. Here, the iPOND-MS technique (Isolation of Proteins on Nascent DNA coupled with Mass Spectrometry) was used to identify the proteome bound to murine PyV (MuPyV) DNA immediately following synthesis and 2 hours post-synthesis. Several novel MuPyV DNA interactors were identified on newly synthesized viral DNA (vDNA), including MCM complex members, DNA primase, DNA polymerase alpha, DNA ligase, and replication factor C. Though displaying partial overlap, the host and viral proteins bound to MuPyV DNA 2 hours post-synthesis lacked many of the replication proteins found on newly synthesized vDNA. These data help distinguish between the host factors critical for MuPyV DNA replication and those involved in downstream processing.IMPORTANCEPolyomaviruses are the causative agents of serious diseases in humans, including progressive multifocal leukoencephalopathy (PML), BK virus nephropathy, and Merkel cell carcinoma. The exact mechanisms by which the virus replicates, and which host cell proteins are required, are incompletely characterized. Identifying the host proteins necessary for efficient viral replication in the cell may reveal targets for downstream targets that may suppress viral replication in vivo.
期刊介绍:
Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.