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嗜热栖热菌中与ATP类似物ADP-BeFx结合的σ(54)依赖性转录激活因子NtrC1的ATP酶结构域的结晶及初步X射线分析

Crystallization and preliminary X-ray analysis of the ATPase domain of the σ(54)-dependent transcription activator NtrC1 from Aquifex aeolicus bound to the ATP analog ADP-BeFx.

作者信息

Sysoeva Tatyana A, Yennawar Neela, Allaire Marc, Nixon B Tracy

机构信息

Biochemistry and Molecular Biology, Penn State University, University Park, PA 16802, USA.

出版信息

Acta Crystallogr Sect F Struct Biol Cryst Commun. 2013 Dec;69(Pt 12):1384-8. doi: 10.1107/S174430911302976X. Epub 2013 Nov 29.

Abstract

One way that bacteria regulate the transcription of specific genes to adapt to environmental challenges is to use different σ factors that direct the RNA polymerase holoenzyme to distinct promoters. Unlike σ(70) RNA polymerase (RNAP), σ(54) RNAP is unable to initiate transcription without an activator: enhancer-binding protein (EBP). All EBPs contain one ATPase domain that belongs to the family of ATPases associated with various cellular activities (AAA+ ATPases). AAA+ ATPases use the energy of ATP hydrolysis to remodel different target macromolecules to perform distinct functions. These mechanochemical enzymes are known to form ring-shaped oligomers whose conformations strongly depend upon nucleotide status. Here, the crystallization of the AAA+ ATPase domain of an EBP from Aquifex aeolicus, NtrC1, in the presence of the non-hydrolyzable ATP analog ADP-BeFx is reported. X-ray diffraction data were collected from two crystals from two different protein fractions of the NtrC1 ATPase domain. Previously, this domain was co-crystallized with ADP and ATP, but the latter crystals were grown from the Walker B substitution variant E239A. Therefore, the new data sets are the first for a wild-type EBP ATPase domain co-crystallized with an ATP analog and they reveal a new crystal form. The resulting structure(s) will shed light on the mechanism of EBP-type transcription activators.

摘要

细菌调节特定基因转录以适应环境挑战的一种方式是使用不同的σ因子,这些因子将RNA聚合酶全酶导向不同的启动子。与σ(70)RNA聚合酶(RNAP)不同,σ(54)RNAP在没有激活剂:增强子结合蛋白(EBP)的情况下无法启动转录。所有EBP都包含一个ATP酶结构域,该结构域属于与各种细胞活动相关的ATP酶家族(AAA + ATP酶)。AAA + ATP酶利用ATP水解的能量重塑不同的靶标大分子以执行不同的功能。已知这些机械化学酶会形成环形寡聚体,其构象强烈依赖于核苷酸状态。在此,报道了嗜热栖热菌的EBP的AAA + ATP酶结构域NtrC1在不可水解的ATP类似物ADP-BeFx存在下的结晶。从NtrC1 ATP酶结构域的两个不同蛋白质组分的两个晶体中收集X射线衍射数据。以前,该结构域与ADP和ATP共结晶,但后者的晶体是从沃克B替代变体E239A生长而来。因此,新数据集是野生型EBP ATP酶结构域与ATP类似物共结晶的首个数据集,它们揭示了一种新的晶体形式。所得结构将阐明EBP型转录激活因子的机制。

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