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在腺病毒12 E1A内与CtBP结合基序相邻的赖氨酸残基处发生的乙酰化会导致结构破坏,并使CtBP结合略有减少。

Acetylation at a lysine residue adjacent to the CtBP binding motif within adenovirus 12 E1A causes structural disruption and limited reduction of CtBP binding.

作者信息

Molloy David, Mapp Katie L, Webster Rachel, Gallimore Phillip H, Grand Roger J A

机构信息

Thames Valley University, Faculty of Health and Human Sciences, Walpole House 18-20 Bond Street, Ealing, London, W5 5AA, UK.

出版信息

Virology. 2006 Nov 25;355(2):115-26. doi: 10.1016/j.virol.2006.05.004. Epub 2006 Aug 17.

Abstract

C-terminal binding protein (CtBP) has been shown to bind to a highly conserved five-amino-acid motif (PXDLS) located very close to the C-terminus of adenovirus early region 1A proteins. It has also been demonstrated that amino acids C-terminal and N-terminal to this original proposed binding site contribute to the interaction. However, conflicting evidence has been presented to show that acetylation of an adjacent lysine residue in Ad5E1A may or may not influence binding. It has now been demonstrated here that acetylation of a lysine, equivalent to position 261 in Ad12 E1A and position 285 in Ad5E1A, in a synthetic peptide disrupts the binding to CtBP1 and CtBP2 and alters the K(i) of the peptide, indicative of a reduction in the affinity of the peptide for CtBP1 and CtBP2, but only to a rather limited extent (less than 2-fold). The solution structures of synthetic peptides equivalent to wild-type and acetylated forms of the Ad12 E1A peptide have been determined by proton NMR spectroscopy. The wild-type form of the peptide adopts a series of beta-turns over the region Val(254)-Arg(262). Within the acetylated isoform, the beta-turn conformation is less extensive, Val(260)-Arg(262) adopting a random confirmation. We conclude that secondary structure (beta-turns) and an appropriate series of amino acid side chains over an extended binding site (PXDLSXK) are necessary for recognition by CtBP, acetylation of lysine interfering with both of these features, but not to such an extent as to totally inhibit interaction. Moreover, it is possible that the beta-turn conformation at the C-terminus of AdE1A contributes to binding to alpha importin and nuclear import. Acetylation of lysine (261) could disrupt interaction through structural destabilization as well as charge neutralization and subsequent nuclear localization.

摘要

C末端结合蛋白(CtBP)已被证明可与一个高度保守的五氨基酸基序(PXDLS)结合,该基序位于腺病毒早期区域1A蛋白C末端非常靠近的位置。也已证明,此最初提出的结合位点C末端和N末端的氨基酸对相互作用有贡献。然而,已有相互矛盾的证据表明,Ad5 E1A中相邻赖氨酸残基的乙酰化可能会或可能不会影响结合。现已在此证明,合成肽中与Ad12 E1A中第261位和Ad5 E1A中第285位相当的赖氨酸的乙酰化会破坏与CtBP1和CtBP2的结合,并改变肽的抑制常数(Ki),这表明肽对CtBP1和CtBP2的亲和力降低,但程度相当有限(小于2倍)。已通过质子核磁共振光谱法确定了与Ad12 E1A肽的野生型和乙酰化形式相当的合成肽的溶液结构。该肽的野生型形式在Val(254)-Arg(262)区域呈现出一系列β-转角。在乙酰化异构体中,β-转角构象不那么广泛,Val(260)-Arg(262)呈现出随机构象。我们得出结论,二级结构(β-转角)以及延伸结合位点(PXDLSXK)上一系列合适的氨基酸侧链对于CtBP的识别是必要的,赖氨酸的乙酰化会干扰这两个特征,但程度不至于完全抑制相互作用。此外,AdE1A C末端的β-转角构象可能有助于与α-输入蛋白结合和核输入。赖氨酸(261)的乙酰化可能通过结构不稳定以及电荷中和和随后的核定位来破坏相互作用。

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