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马立克氏病病毒(MDV)的酶失活U(S)3蛋白激酶能够使丝状肌动蛋白解聚,但会导致病毒粒子在核周内陷中积累,并降低病毒生长。

Enzymatically inactive U(S)3 protein kinase of Marek's disease virus (MDV) is capable of depolymerizing F-actin but results in accumulation of virions in perinuclear invaginations and reduced virus growth.

作者信息

Schumacher Daniel, McKinney Caleb, Kaufer Benedikt B, Osterrieder Nikolaus

机构信息

Department of Microbiology and Immunology, College of Veterinary Medicine, Cornell University, Ithaca, NY 14853, USA.

出版信息

Virology. 2008 May 25;375(1):37-47. doi: 10.1016/j.virol.2008.01.026. Epub 2008 Mar 4.

Abstract

Marek's disease (MD) is a highly contagious, lymphoproliferative disease of chickens caused by the cell-associated MD virus (MDV), a member of the alphaherpesvirus subfamily. In a previous study we showed that the absence of the serine/threonine protein kinase (pU(S)3) encoded in the MDV unique-short region resulted in accumulation of primarily enveloped virions in the perinuclear space and significant impairment of virus growth in vitro. It was also shown that pU(S)3 is involved in actin stress fiber breakdown [Schumacher, D., Tischer, B. K., Trapp, S., and Osterrieder, N. (2005). Here, we constructed a recombinant virus to test the importance of pU(S)3 kinase activity for MDV replication and its functions in actin rearrangement. Disruption of the kinase active site was achieved by substituting a lysine at position 220 with an alanine (K220A). Titers of a kinase-negative MDV mutant, 20U(S)3()K220A, were reduced when compared to parental virus similar to those of the U(S)3 deletion mutant. We were also able to demonstrate complete absence of phosphorylation of MDV-specific phosphoprotein pp38 in cells infected with the kinase-deficient virus, indicating that pp38 phosphorylation depends entirely on the kinase activity of pU(S)3. Enzymatically inactive pU(S)3()K220A was, however, still capable of mediating breakdown of the actin cytoskeleton in transfection studies, and this activity was indistinguishable from that of wild-type pU(S)3(). Furthermore, we demonstrated that pU(S)3 possesses anti-apoptotic activity, which is dependent on its kinase activity. Taken together, our results demonstrate that pU(S)3 and MDV-specific phosphoprotein pp38 represent a kinase-substrate pair and that growth impairment in the absence of pU(S)3 is caused by the absence of kinase activity. The unaltered disruption of F-actin by the K220A pU(S)3 mutant suggests that F-actin disassembly is unrelated to MDV growth restrictions in the absence of the unique-short protein kinase.

摘要

马立克氏病(MD)是一种由细胞相关的马立克氏病病毒(MDV)引起的鸡的高度传染性淋巴增生性疾病,MDV属于α疱疹病毒亚科。在先前的一项研究中,我们发现MDV独特短区域编码的丝氨酸/苏氨酸蛋白激酶(pU(S)3)缺失会导致主要包膜病毒粒子在核周空间积累,并显著损害病毒的体外生长。研究还表明,pU(S)3参与肌动蛋白应激纤维的分解[舒马赫,D.,蒂舍尔,B.K.,特拉普,S.,和奥斯特里德,N.(2005年)]。在此,我们构建了一种重组病毒,以测试pU(S)3激酶活性对MDV复制的重要性及其在肌动蛋白重排中的功能。通过将第220位的赖氨酸替换为丙氨酸(K220A)实现激酶活性位点的破坏。与亲本病毒相比,激酶阴性MDV突变体20U(S)3()K220A的滴度降低,类似于U(S)3缺失突变体。我们还能够证明,在感染激酶缺陷病毒的细胞中,MDV特异性磷蛋白pp38完全没有磷酸化,这表明pp38磷酸化完全依赖于pU(S)3的激酶活性。然而,在转染研究中,酶活性失活的pU(S)3()K220A仍然能够介导肌动蛋白细胞骨架的分解,并且这种活性与野生型pU(S)3()的活性没有区别。此外,我们证明pU(S)3具有抗凋亡活性,这取决于其激酶活性。综上所述,我们的结果表明,pU(S)3和MDV特异性磷蛋白pp38代表激酶-底物对,并且在没有pU(S)3的情况下生长受损是由激酶活性缺失引起的。K220A pU(S)3突变体对F-肌动蛋白的未改变破坏表明,在没有独特短蛋白激酶的情况下,F-肌动蛋白的拆卸与MDV生长限制无关。

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