首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >1H 15N and 13C backbone chemical shift assignments secondary structure and magnesium-binding characteristics of the Bacillus subtilis response regulator Spo0F determined by heteronuclear high-resolution NMR.
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1H 15N and 13C backbone chemical shift assignments secondary structure and magnesium-binding characteristics of the Bacillus subtilis response regulator Spo0F determined by heteronuclear high-resolution NMR.

机译:1H15N和13C主链化学位移分配二级结构和枯草芽孢杆菌响应调节剂Spo0F的镁结合特性通过异核高分辨率NMR确定。

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摘要

Spo0F, sporulation stage 0 F protein, a 124-residue protein responsible, in part, for regulating the transition of Bacillus subtilis from a vegetative state to a dormant endospore, has been studied by high-resolution NMR. The 1H, 15N, and 13C chemical shift assignments for the backbone residues have been determined from analyses of 3D spectra, 15N TOCSY-HSQC, 15N NOESY-HSQC, HNCA, and HN(CO)CA. Assignments for many sidechain proton resonances are also reported. The secondary structure, inferred from short- and medium-range NOEs, 3JHN alpha coupling constants, and hydrogen exchange patterns, define a topology consistent with a doubly wound (alpha/beta)5 fold. Interestingly, comparison of the secondary structure of Spo0F to the structure of the Escherichia coli response regulator, chemotaxis Y protein (CheY) (Volz K, Matsumura P, 1991, J Biol Chem 266:15511-15519; Bruix M et al., 1993, Eur J Biochem 215:573-585), show differences in the relative length of secondary structure elements that map onto a single face of the tertiary structure of CheY. This surface may define a region of binding specificity for response regulators. Magnesium titration of Spo0F, followed by amide chemical shift changes, gives an equilibrium dissociation constant of 20 +/- 5 mM. Amide resonances most perturbed by magnesium binding are near the putative site of phosphorylation, Asp 54.
机译:Spo0F是孢子形成阶段的0 F蛋白,它是124个残基的蛋白质,部分负责调节枯草芽孢杆菌从营养状态到休眠内生孢子的转变,已通过高分辨率NMR进行了研究。通过3D光谱,15N TOCSY-HSQC,15N NOESY-HSQC,HNCA和HN(CO)CA的分析确定了骨架残基的1H,15N和13C化学位移分配。还报道了许多侧链质子共振的分配。从近距离和中距离NOE,3JHNα耦合常数和氢交换模式推断出的二级结构定义了与双倍缠绕(alpha / beta)5倍一致的拓扑。有趣的是,将Spo0F的二级结构与大肠杆菌反应调节剂的结构性趋化性Y蛋白(CheY)进行了比较(Volz K,Matsumura P,1991,J Biol Chem 266:15511-15519; Bruix M等,1993) ,Eur J Biochem 215:573-585)显示了映射到CheY的三级结构的单个面上的二级结构元素的相对长度的差异。该表面可以限定针对反应调节剂的结合特异性区域。镁滴定Spo0F,然后进行酰胺化学位移变化,得出的平衡解离常数为20 +/- 5 mM。最受镁结合干扰的酰胺共振位于假定的磷酸化位点Asp 54附近。

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