首页> 外文期刊>BioMetals: An International Journal on the Role of Metal Ions in Biology, Biochemistry and Medicine >Structural analysis of divalent metals binding to the Bacillus subtilis response regulator Spo0F: the possibility for In vitro metalloregulation in the initiation of sporulation
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Structural analysis of divalent metals binding to the Bacillus subtilis response regulator Spo0F: the possibility for In vitro metalloregulation in the initiation of sporulation

机译:与枯草芽孢杆菌应答调节剂Spo0F结合的二价金属的结构分析:孢子形成中体外金属调节的可能性

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摘要

The presence of a divalent metal ion in a negatively charged aspartic acid pocket is essential for phosphorylation of response regulator proteins. Here, we present metal binding studies of the Bacillus subtilis response regulator Spo0F using NMR and mu ESI-MS. NMR studies show that the divalent metals Ca2+, Mg2+ and Mn2+ primarily bind, as expected, in the Asp pocket phosphorylation site. However, identical studies with Cu2+ show distinct binding effects in three specific locations: (i) the Asp pocket, (ii) a grouping of charged residues at a site opposite of the Asp pocket, and (iii) on the beta 4-alpha 4 loop and the beta 5/alpha 5 interface, particularly around and including H101. mu ESI-MS studies stoichiometrically confirm the NMR studies and demonstrate that most divalent metal ions bind to Spo0F primarily in a 1:1 ratio. Again, in the case of Cu2+, multiple metal-bound species are observed. Subsequent experiments reveal that Mg2+ supports phosphotransfer between KinA and Spo0F, while Cu2+ fails to support KinA phosphotransfer. Additionally, the presence of Cu2+ at non-lethal concentrations in sporulation media for B. subtilis and the related organism Pasteuria penetrans was found to inhibit spore formation while continuing to permit vegetative growth. Depending on the type of divalent metal ion present, in vitro phosphorylation of Spo0F by its cognate kinase KinA can be inhibited.
机译:在带负电荷的天冬氨酸口袋中存在二价金属离子对于响应调节蛋白的磷酸化至关重要。在这里,我们介绍了使用NMR和ESI-MS对枯草芽孢杆菌应答调节剂Spo0F的金属结合研究。 NMR研究表明,二价金属Ca2 +,Mg2 +和Mn2 +如预期的那样主要在Asp口袋磷酸化位点结合。但是,对Cu2 +的相同研究显示了在三个特定位置的独特结合作用:(i)Asp袋,(ii)与Asp袋相对的位点的一组带电残基,以及(iii)在β4-alpha 4上循环和beta 5 / alpha 5接口,尤其是H101周围(包括H101)。 mu ESI-MS研究在化学计量上证实了NMR研究,并证明大多数二价金属离子主要以1:1的比例结合到Spo0F。同样,在Cu2 +的情况下,观察到多种与金属结合的物质。随后的实验表明,Mg2 +支持KinA和Spo0F之间的磷酸转移,而Cu2 +无法支持KinA磷酸转移。另外,发现枯草芽孢杆菌和相关生物巴斯德氏菌的芽孢形成培养基中非致死浓度的Cu2 +的存在抑制了孢子的形成,同时继续允许营养生长。根据存在的二价金属离子的类型,可以抑制Spo0F的同源激酶KinA的体外磷酸化。

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