Ostapchuk Philomena, Anderson Mary E, Chandrasekhar Sharanya, Hearing Patrick
Department of Molecular Genetics and Microbiology, School of Medicine, Stony Brook University, NY 11794, USA.
J Virol. 2006 Jul;80(14):6973-81. doi: 10.1128/JVI.00123-06.
Packaging of the adenovirus (Ad) genome into a capsid is absolutely dependent upon the presence of a cis-acting region located at the left end of the genome referred to as the packaging domain. The functionally significant sequences within this domain consist of at least seven similar repeats, referred to as the A repeats, which have the consensus sequence 5' TTTG-N(8)-CG 3'. In vitro and in vivo binding studies have demonstrated that the adenovirus protein IVa2 binds to the CG motif of the packaging sequences. In conjunction with IVa2, another virus-specific protein binds to the TTTG motifs in vitro. The efficient formation of these protein-DNA complexes in vitro was precisely correlated with efficient packaging activity in vivo. We demonstrate that the binding activity to the TTTG packaging sequence motif is the product of the L4 22-kDa open reading frame. Previously, no function had been ascribed to this protein. Truncation of the L4 22-kDa protein in the context of the viral genome did not reduce viral gene expression or viral DNA replication but eliminated the production of infectious virus. We suggest that the L4 22-kDa protein, in conjunction with IVa2, plays a critical role in the recognition of the packaging domain of the Ad genome that leads to viral DNA encapsidation. The L4 22-kDa protein is also involved in recognition of transcription elements of the Ad major late promoter.
腺病毒(Ad)基因组包装到衣壳中绝对依赖于基因组左端一个被称为包装结构域的顺式作用区域的存在。该结构域内具有功能重要性的序列由至少七个相似的重复序列组成,称为A重复序列,其共有序列为5'TTTG - N(8)-CG 3'。体外和体内结合研究表明,腺病毒蛋白IVa2与包装序列的CG基序结合。与IVa2一起,另一种病毒特异性蛋白在体外与TTTG基序结合。这些蛋白质 - DNA复合物在体外的有效形成与体内的有效包装活性精确相关。我们证明,对TTTG包装序列基序的结合活性是L4 22 kDa开放阅读框的产物。以前,该蛋白没有被赋予任何功能。在病毒基因组背景下截短L4 22 kDa蛋白不会降低病毒基因表达或病毒DNA复制,但会消除感染性病毒的产生。我们认为,L4 22 kDa蛋白与IVa2一起,在识别导致病毒DNA衣壳化的Ad基因组包装结构域中起关键作用。L4 22 kDa蛋白还参与识别Ad主要晚期启动子的转录元件。