AC81 Is a Putative Disulfide Isomerase Involved in Baculoviral Disulfide Bond Formation

被引:4
作者
Zhang, Huanyu [1 ]
Kuang, Wenhua [1 ]
Fu, Congcong [1 ]
Li, Jiang [1 ]
Wang, Manli [1 ]
Hu, Zhihong [1 ]
机构
[1] Chinese Acad Sci, Wuhan Inst Virol, Ctr Biosafety Mega Sci, State Key Lab Virol, Wuhan, Peoples R China
基金
中国国家自然科学基金;
关键词
AC81; disulfide isomerase; Lefavirales; baculovirus; disulfide bond pathway; P33; PIF5; CALIFORNICA MULTIPLE NUCLEOPOLYHEDROVIRUS; CRYSTAL-STRUCTURE; PROTEIN; GENE; P-33; THIOREDOXIN; AC92; OXIDOREDUCTASE; SUPERFAMILY; PATHWAY;
D O I
10.1128/jvi.01167-22
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The correct formation of native disulfide bonds is critical for the proper structure and function of many proteins. Cellular disulfide bond formation pathways commonly consist of two parts: sulfhydryl oxidase-mediated oxidation and disulfide isomerase-mediated isomerization. Some large DNA viruses, such as baculoviruses, encode sulfhydryl oxidases, but viral disulfide isomerases have not yet been identified, although G4L in poxvirus has been suggested to serve such a function. Here, we report that the baculovirus core gene ac81 encodes a putative disulfide isomerase. ac81 is conserved in baculoviruses, nudiviruses, and hytrosaviruses. We found that AC81 homologs contain a typical thioredoxin fold conserved in disulfide isomerases. To determine the role of AC81, a series of Autographa californica nucleopolyhedrovirus (AcMNPV) bacmids containing ac81 knockout or point mutations was generated, and the results showed that AC81 is essential for budded virus production, multinucleocapsid occlusion-derived virus (ODV) formation, and ODV embedding in occlusion bodies. Nonreducing Western blot analysis indicated that disulfide bond formation in per os infectivity factor 5 (PIF5), a substrate of the baculoviral sulfhydryl oxidase P33, was abnormal when ac81 was knocked out or mutated. Pulldown assays showed that AC81 interacted with PIF5 and P33 in infected cells. In addition, two critical regions that harbor key amino acids for function were identified in AC81. Taken together, our results suggest that AC81 is a key component involved in the baculovirus disulfide bond formation pathway and likely functions as a disulfide isomerase.IMPORTANCE Many large DNA viruses, such as poxvirus, asfarvirus, and baculovirus, encode their own sulfhydryl oxidase to facilitate the disulfide bond formation of viral proteins. Here, we show that AC81 functions as a putative disulfide isomerase and is involved in multiple functions of the baculovirus life cycle. Interestingly, AC81 and P33 (sulfhydryl oxidase) are conserved in baculoviruses, nudiviruses, and hytrosaviruses, which are all insect-specific large DNA viruses replicating in the nucleus, suggesting that viral disulfide bond formation is an ancient mechanism shared by these viruses. Many large DNA viruses, such as poxvirus, asfarvirus, and baculovirus, encode their own sulfhydryl oxidase to facilitate the disulfide bond formation of viral proteins. Here, we show that AC81 functions as a putative disulfide isomerase and is involved in multiple functions of the baculovirus life cycle.
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页数:15
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共 46 条
  • [11] Protein disulfide isomerase: the structure of oxidative folding
    Gruber, Christian W.
    Cemazar, Maga
    Heras, Begona
    Martin, Jennifer L.
    Craik, David J.
    [J]. TRENDS IN BIOCHEMICAL SCIENCES, 2006, 31 (08) : 455 - 464
  • [12] Vaccinia virus G4L gene encodes a second glutaredoxin
    Gvakharia, BO
    Koonin, EK
    Mathews, CK
    [J]. VIROLOGY, 1996, 226 (02) : 408 - 411
  • [13] Cytosolic Disulfide Bond Formation in Cells Infected with Large Nucleocytoplasmic DNA Viruses
    Hakim, Motti
    Fass, Deborah
    [J]. ANTIOXIDANTS & REDOX SIGNALING, 2010, 13 (08) : 1261 - 1271
  • [14] Autographa californica multiple nucleopolyhedrovirus ODV-E56 envelope protein is required for oral infectivity and can be substituted functionally by Rachiplusia ou multiple nucleopolyhedrovirus ODV-E56
    Harrison, Robert L.
    Sparks, Wendy O.
    Bonning, Bryony C.
    [J]. JOURNAL OF GENERAL VIROLOGY, 2010, 91 : 1173 - 1182
  • [15] Hatahet F, 2009, ANTIOXID REDOX SIGN, V11, P2807, DOI [10.1089/ars.2009.2466, 10.1089/ARS.2009.2466]
  • [16] Highly accurate protein structure prediction with AlphaFold
    Jumper, John
    Evans, Richard
    Pritzel, Alexander
    Green, Tim
    Figurnov, Michael
    Ronneberger, Olaf
    Tunyasuvunakool, Kathryn
    Bates, Russ
    Zidek, Augustin
    Potapenko, Anna
    Bridgland, Alex
    Meyer, Clemens
    Kohl, Simon A. A.
    Ballard, Andrew J.
    Cowie, Andrew
    Romera-Paredes, Bernardino
    Nikolov, Stanislav
    Jain, Rishub
    Adler, Jonas
    Back, Trevor
    Petersen, Stig
    Reiman, David
    Clancy, Ellen
    Zielinski, Michal
    Steinegger, Martin
    Pacholska, Michalina
    Berghammer, Tamas
    Bodenstein, Sebastian
    Silver, David
    Vinyals, Oriol
    Senior, Andrew W.
    Kavukcuoglu, Koray
    Kohli, Pushmeet
    Hassabis, Demis
    [J]. NATURE, 2021, 596 (7873) : 583 - +
  • [17] MAFFT Multiple Sequence Alignment Software Version 7: Improvements in Performance and Usability
    Katoh, Kazutaka
    Standley, Daron M.
    [J]. MOLECULAR BIOLOGY AND EVOLUTION, 2013, 30 (04) : 772 - 780
  • [18] KIM JS, 1993, PROTEIN SCI, V2, P348
  • [19] Three Conserved Regions in Baculovirus Sulfhydryl Oxidase P33 Are Critical for Enzymatic Activity and Function
    Kuang, Wenhua
    Zhang, Huanyu
    Wang, Manli
    Zhou, Ning-Yi
    Deng, Fei
    Wang, Hualin
    Gong, Peng
    Hu, Zhihong
    [J]. JOURNAL OF VIROLOGY, 2017, 91 (23)
  • [20] P33 of Helicoverpa armigera single nucleocapsid nucleopolyhedrovirus is a functional homolog of AcP33
    Kuang, Wenhua
    Zhang, Huanyu
    Hou, Dianhai
    Wang, Manli
    Deng, Fei
    Wang, Hualin
    Hu, Zhihong
    [J]. VIROLOGICA SINICA, 2016, 31 (04) : 346 - 349