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首页> 外文期刊>Virology >Mutations of amino acids in the DNA-recognition domain of Epstein-Barr virus ZEBRA protein alter its sub-nuclear localization and affect formation of replication compartments.
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Mutations of amino acids in the DNA-recognition domain of Epstein-Barr virus ZEBRA protein alter its sub-nuclear localization and affect formation of replication compartments.

机译:爱泼斯坦-巴尔病毒ZEBRA蛋白的DNA识别域中的氨基酸突变会改变其亚核定位并影响复制区室的形成。

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摘要

ZEBRA, a transcription factor and DNA replication protein encoded by the Epstein-Barr virus (EBV) BZLF1 gene, plays indispensable roles in the EBV lytic cycle. We recently described the phenotypes of 46 single amino acid substitutions introduced into the DNA-recognition region of ZEBRA [Heston, L., El-Guindy, A., Countryman, J., Dela Cruz, C., Delecluse, H.J., and Miller, G. 2006]. The 27 DNA-binding-proficient mutants exhibited distinct defects in their ability to activate expression of the kinetic classes of viral genes. Four phenotypic variants could be discerned: wild-type, defective at activating Rta, defective at activating early genes, and defective at activating late genes. Here we analyze the distribution of ZEBRA within the nucleus and the localization of EA-D (the viral DNA polymerase processivity factor), an indicator of the development of replication compartments, in representatives of each phenotypic group. Plasmids encoding wild-type (WT) and mutant ZEBRA were transfected into 293 cells containing EBV-bacmids. WT ZEBRA protein was diffusely and smoothly distributed throughout the nucleus, sparing nucleoli, and partially recruited to globular replication compartments. EA-D induced by WT ZEBRA was present diffusely in some cells and concentrated in globular replication compartments in other cells. The distribution of ZEBRA and EA-D proteins was identical to WT following transfection of K188R, a mutant with a conservative change. The distribution of S186A mutant ZEBRA protein, defective for activation of Rta and EA-D, was identical to WT, except that the mutant ZEBRA was never found in globular compartments. Co-expression of Rta with S186A mutant rescued diffuse EA-D but not globular replication compartments. The most striking observation was that several mutant ZEBRA proteins defective in activating EA-D (R179A, K181A and A185V) and defective in activating lytic viral DNA replication and late genes (Y180E and K188A) were localized to numerous punctate foci. The speckled appearance of R179A andY180E was more regular and clearly defined in EBV-positive than in EBV-negative 293 cells. The Y180E late-mutant induced EA-D, but prevented EA-D from localizing to globular replication compartments. These results show that individual amino acids within the basic domain influence localization of the ZEBRA protein and its capacity to induce EA-D to become located in mature viral replication compartments. Furthermore, these mutant ZEBRA proteins delineate several stages in the processes of nuclear re-organization which accompany lytic EBV replication.
机译:ZEBRA是由爱泼斯坦-巴尔病毒(EBV)BZLF1基因编码的转录因子和DNA复制蛋白,在EBV裂解周期中起着不可或缺的作用。我们最近描述了引入ZEBRA的DNA识别区域的46个单氨基酸取代的表型[Heston,L.,El-Guindy,A.,Countryman,J.,Dela Cruz,C.,Delecluse,HJ和Miller ,G。2006]。 27种DNA结合能力强的突变体在激活病毒基因动力学类别表达的能力方面表现出明显的缺陷。可以识别出四个表型变体:野生型,激活Rta缺陷,激活早期基因缺陷和激活晚期基因缺陷。在这里,我们在每个表型组的代表中分析了ZEBRA在细胞核内的分布和EA-D(病毒DNA聚合酶持续性因子)的定位,EA-D是复制区室发展的指标。将编码野生型(WT)和突变型ZEBRA的质粒转染到含有EBV杆状病毒的293细胞中。 WT ZEBRA蛋白在核内分散而平滑地分布,保留核仁,并部分募集到球状复制区室。 WT ZEBRA诱导的EA-D散布在某些细胞中,并集中在其他细胞的球状复制区室中。转染具有保守变化的突变体K188R后,ZEBRA和EA-D蛋白的分布与野生型相同。有缺陷的Rta和EA-D激活的S186A突变体ZEBRA蛋白的分布与WT相同,只是在球状区室中从未发现该突变体ZEBRA。 Rta与S186A突变体的共表达可以拯救弥漫性EA-D,但不能拯救球状复制区室。最显着的观察结果是,在激活EA-D时有缺陷(R179A,K181A和A185V)和在裂解性病毒DNA复制中有缺陷的突变ZEBRA蛋白和晚期基因(Y180E和K188A)位于多个点状病灶中。 R179A和Y180E的斑点外观在EBV阳性细胞中比在EBV阴性293细胞中更为规则和明确。 Y180E晚期突变诱导了EA-D,但阻止了EA-D定位于球状复制区室。这些结果表明,基本结构域内的单个氨基酸会影响ZEBRA蛋白的定位及其诱导EA-D进入成熟病毒复制区室的能力。此外,这些突变的ZEBRA蛋白描绘了伴随溶性EBV复制的核重组过程中的几个阶段。

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