Musayev Faik N, Zarate-Perez Francisco, Bardelli Martino, Bishop Clayton, Saniev Emil F, Linden R Michael, Henckaerts Els, Escalante Carlos R
Department of Infectious Diseases, King's College London , London SE1 9RT, United Kingdom.
UCL Gene Therapy Consortium, UCL Cancer Institute, University College London , London WC1E 6DD, United Kingdom.
Biochemistry. 2015 Sep 29;54(38):5907-19. doi: 10.1021/acs.biochem.5b00610. Epub 2015 Sep 14.
Adeno-associated virus (AAV) nonstructural proteins Rep78 and Rep68 carry out all DNA transactions that regulate the AAV life cycle. They share two multifunctional domains: an N-terminal origin binding/nicking domain (OBD) from the HUH superfamily and a SF3 helicase domain. A short linker of ∼20 amino acids that is critical for oligomerization and function connects the two domains. Although X-ray structures of the AAV5 OBD and AAV2 helicase domains have been determined, information about the full-length protein and linker conformation is not known. This article presents the solution structure of AAV2 Rep68 using small-angle X-ray scattering (SAXS). We first determined the X-ray structures of the minimal AAV2 Rep68 OBD and of the OBD with the linker region. These X-ray structures reveal novel features that include a long C-terminal α-helix that protrudes from the core of the protein at a 45° angle and a partially structured linker. SAXS studies corroborate that the linker is not extended, and we show that a proline residue in the linker is critical for Rep68 oligomerization and function. SAXS-based rigid-body modeling of Rep68 confirms these observations, showing a compact arrangement of the two domains in which they acquire a conformation that positions key residues in all domains on one face of the protein, poised to interact with DNA.
腺相关病毒(AAV)非结构蛋白Rep78和Rep68执行调控AAV生命周期的所有DNA交易。它们共享两个多功能结构域:来自HUH超家族的N端起源结合/切口结构域(OBD)和一个SF3解旋酶结构域。一个约20个氨基酸的短连接子对寡聚化和功能至关重要,连接着这两个结构域。尽管已经确定了AAV5 OBD和AAV2解旋酶结构域的X射线结构,但关于全长蛋白和连接子构象的信息尚不清楚。本文利用小角X射线散射(SAXS)展示了AAV2 Rep68的溶液结构。我们首先确定了最小化的AAV2 Rep68 OBD以及带有连接子区域的OBD的X射线结构。这些X射线结构揭示了一些新特征,包括一个从蛋白核心以45°角突出的长C端α螺旋和一个部分结构化的连接子。SAXS研究证实连接子并非伸展状态,并表明连接子中的一个脯氨酸残基对Rep68的寡聚化和功能至关重要。基于SAXS的Rep68刚体建模证实了这些观察结果,显示出两个结构域紧密排列,在这种排列中它们获得一种构象,使所有结构域中的关键残基位于蛋白的同一面上,随时准备与DNA相互作用。