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单纯疱疹病毒解旋酶-引发酶复合物在腺相关病毒DNA复制过程中的作用。

Role of the herpes simplex virus helicase-primase complex during adeno-associated virus DNA replication.

作者信息

Slanina Heiko, Weger Stefan, Stow Nigel D, Kuhrs Annette, Heilbronn Regine

机构信息

Institut für Virologie, Charité-Universitätsmedizin Berlin, Campus Benjamin Franklin, Hindenburgdamm 27, 12203 Berlin, Germany.

出版信息

J Virol. 2006 Jun;80(11):5241-50. doi: 10.1128/JVI.02718-05.

Abstract

A subset of DNA replication proteins of herpes simplex virus (HSV) comprising the single-strand DNA-binding protein, ICP8 (UL29), and the helicase-primase complex (UL5, UL8, and UL52 proteins) has previously been shown to be sufficient for the replication of adeno-associated virus (AAV). We recently demonstrated complex formation between ICP8, AAV Rep78, and the single-stranded DNA AAV genome, both in vitro and in the nuclear HSV replication domains of coinfected cells. In this study the functional role(s) of HSV helicase and primase during AAV DNA replication were analyzed. To differentiate between their necessity as structural components of the HSV replication complex or as active enzymes, point mutations within the helicase and primase catalytic domains were analyzed. In two complementary approaches the remaining HSV helper functions were either provided by infection with HSV mutants or by plasmid transfection. We show here that upon cotransfection of the minimal four HSV proteins (i.e., the four proteins constituting the minimal requirements for basal AAV replication), UL52 primase catalytic activity was not required for AAV DNA replication. In contrast, UL5 helicase activity was necessary for fully efficient replication. Confocal microscopy confirmed that all mutants retained the ability to support formation of ICP8-positive nuclear replication foci, to which AAV Rep78 colocalized in a manner strictly dependent on the presence of AAV single-stranded DNA (ssDNA). The data indicate that recruitment of AAV Rep78 and ssDNA to nuclear replication sites by the four HSV helper proteins is maintained in the absence of catalytic primase or helicase activities and suggest an involvement of the HSV UL5 helicase activity during AAV DNA replication.

摘要

单纯疱疹病毒(HSV)的一组DNA复制蛋白,包括单链DNA结合蛋白ICP8(UL29)和解旋酶-引发酶复合物(UL5、UL8和UL52蛋白),先前已被证明足以支持腺相关病毒(AAV)的复制。我们最近在体外以及共感染细胞的核HSV复制结构域中都证明了ICP8、AAV Rep78和单链DNA AAV基因组之间会形成复合物。在本研究中,我们分析了HSV解旋酶和引发酶在AAV DNA复制过程中的功能作用。为了区分它们作为HSV复制复合物结构成分的必要性或作为活性酶的必要性,我们分析了解旋酶和引发酶催化结构域内的点突变。通过两种互补方法,其余的HSV辅助功能要么通过感染HSV突变体来提供,要么通过质粒转染来提供。我们在此表明,在共转染最小的四种HSV蛋白(即构成基础AAV复制最低要求的四种蛋白)后,AAV DNA复制不需要UL52引发酶的催化活性。相反,UL5解旋酶活性对于高效复制是必需的。共聚焦显微镜证实,所有突变体都保留了支持形成ICP8阳性核复制灶的能力,AAV Rep78以严格依赖于AAV单链DNA(ssDNA)存在的方式与这些核复制灶共定位。数据表明,在没有催化引发酶或解旋酶活性的情况下,四种HSV辅助蛋白仍能将AAV Rep78和ssDNA募集到核复制位点,并提示HSV UL5解旋酶活性参与了AAV DNA复制过程。

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