首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Probing metal ion binding and conformational properties of the colicin E9 endonuclease by electrospray ionization time-of-flight mass spectrometry
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Probing metal ion binding and conformational properties of the colicin E9 endonuclease by electrospray ionization time-of-flight mass spectrometry

机译:通过电喷雾电离飞行时间质谱探测大肠菌素E9核酸内切酶的金属离子结合和构象性质

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摘要

Nano-electrospray ionization time-of-flight mass spectrometry (ESI-MS) was used to study the conformational consequences of metal ion binding to the colicin E9 endonuclease (E9 DNase) by taking advantage of the unique capability of ESI-MS to allow simultaneous assessment of conformational heterogeneity and metal ion binding. Alterations of charge state distributions on metal ion binding/release were correlated with spectral changes observed in far- and near-UV circular dichroism (CD) and intrinsic tryptophan fluorescence. In addition, hydrogen/deuterium (H/D) exchange experiments were used to probe structural integrity. The present study shows that ESI-MS is sensitive to changes of the thermodynamic stability of E9 DNase as a result of metal ion binding/release in a manner consistent with that deduced from proteolysis and calorimetric experiments. Interestingly, acid-induced release of the metal ion from the E9 DNase causes dramatic conformational instability associated with a loss of fixed tertiary structure, but secondary structure is retained. Furthermore, ESI-MS enabled the direct observation of the noncovalent protein complex of E9 DNase bound to its cognate immunity protein Im9 in the presence and absence of Zn2+. Gas-phase dissociation experiments of the deuterium-labeled binary and ternary complexes revealed that metal ion binding, not Im9, results in a dramatic exchange protection of E9 DNase in the complex. In addition, our metal ion binding studies and gas-phase dissociation experiments of the ternary E9 DNase-Zn2+-Im9 complex have provided further evidence that electrostatic interactions govern the gas phase ion stability.
机译:纳米电喷雾电离飞行时间质谱(ESI-MS)用于研究金属离子与大肠菌素E9核酸内切酶(E9 DNase)结合的构象后果,这是利用ESI-MS的独特功能来实现的。评估构象异质性和金属离子结合。金属离子结合/释放的电荷状态分布的变化与在远紫外和近紫外圆二色性(CD)和固有色氨酸荧光中观察到的光谱变化相关。此外,氢/氘(H / D)交换实验用于探测结构完整性。本研究表明,ESI-MS对金属离子结合/释放导致的E9 DNase热力学稳定性变化敏感,其变化方式与蛋白水解和量热实验一致。有趣的是,酸诱导的金属离子从E9 DNase的释放引起剧烈的构象不稳定性,与固定的三级结构的丧失相关,但二级结构得以保留。此外,在存在和不存在Zn 2 + 的情况下,ESI-MS都可以直接观察与其同源免疫蛋白Im9结合的E9 DNase的非共价蛋白复合物。氘标记的二元和三元络合物的气相解离实验表明,金属离子结合而不是Im9导致络合物中E9 DNase的显着交换保护。此外,我们对三元E9 DNase-Zn 2 + -Im9络合物的金属离子结合研究和气相离解实验提供了进一步的证据,表明静电相互作用决定了气相离子的稳定性。

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