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诱导型细菌赖氨酸脱羧酶与一种新型AAA+ ATP酶之间形成独特复合物。

Formation of a distinctive complex between the inducible bacterial lysine decarboxylase and a novel AAA+ ATPase.

作者信息

Snider Jamie, Gutsche Irina, Lin Michelle, Baby Sabulal, Cox Brian, Butland Gareth, Greenblatt Jack, Emili Andrew, Houry Walid A

机构信息

Department of Biochemistry, University of Toronto, Toronto, Ontario M5S 1A8, Canada.

出版信息

J Biol Chem. 2006 Jan 20;281(3):1532-46. doi: 10.1074/jbc.M511172200. Epub 2005 Nov 21.

Abstract

AAA+ ATPases are ubiquitous proteins that employ the energy obtained from ATP hydrolysis to remodel proteins, DNA, or RNA. The MoxR family of AAA+ proteins is widespread throughout bacteria and archaea but is largely uncharacterized. Limited work with specific members has suggested a potential role as molecular chaperones involved in the assembly of protein complexes. As part of an effort aimed at determining the function of novel AAA+ chaperones in Escherichia coli, we report the characterization of a representative member of the MoxR family, YieN, which we have renamed RavA (regulatory ATPase variant A). We show that the ravA gene exists on an operon with another gene encoding a protein, YieM, of unknown function containing a Von Willebrand Factor Type A domain. RavA expression is under the control of the sigmaS transcription factor, and its levels increase toward late log/early stationary phase, consistent with its possible role as a general stress-response protein. RavA functions as an ATPase and forms hexameric oligomers. Importantly, we demonstrate that RavA interacts strongly with inducible lysine decarboxylase (LdcI or CadA) forming a large cage-like structure consisting of two LdcI decamers linked by a maximum of five RavA oligomers. Surprisingly, the activity of LdcI does not appear to be affected by binding to RavA in a number of in vitro and in vivo assays, however, complex formation results in the stimulation of RavA ATPase activity. Data obtained suggest that the RavA-LdcI interaction may be important for the regulation of RavA activity against its targets.

摘要

AAA+ ATP酶是普遍存在的蛋白质,利用ATP水解获得的能量对蛋白质、DNA或RNA进行重塑。AAA+蛋白质的MoxR家族广泛存在于细菌和古生菌中,但在很大程度上尚未得到充分研究。对特定成员的有限研究表明,它可能作为分子伴侣参与蛋白质复合物的组装。作为确定大肠杆菌中新型AAA+伴侣功能的研究工作的一部分,我们报告了MoxR家族一个代表性成员YieN的特性,我们将其重新命名为RavA(调节性ATP酶变体A)。我们发现ravA基因与另一个基因存在于一个操纵子上,另一个基因编码一种功能未知的蛋白质YieM,YieM含有一个血管性血友病因子A结构域。RavA的表达受sigmaS转录因子的控制,其水平在对数后期/稳定期早期升高,这与其作为一般应激反应蛋白的可能作用一致。RavA作为一种ATP酶发挥作用并形成六聚体寡聚物。重要的是,我们证明RavA与诱导型赖氨酸脱羧酶(LdcI或CadA)强烈相互作用,形成一个大的笼状结构,该结构由两个LdcI十聚体通过最多五个RavA寡聚物连接而成。令人惊讶的是,在许多体外和体内试验中,LdcI的活性似乎不受与RavA结合的影响,然而,复合物的形成会刺激RavA的ATP酶活性。获得的数据表明,RavA-LdcI相互作用可能对调节RavA针对其靶标的活性很重要。

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