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首页> 外文期刊>The Biochemical Journal >Mn2+-adenosine nucleotide complexes in the presence of the nitrogenase iron-protein: detection of conformational rearrangements directly at the nucleotide binding site by EPR and 2D-ESEEM (two-dimensional electron spin-echo envelope modulation spectr
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Mn2+-adenosine nucleotide complexes in the presence of the nitrogenase iron-protein: detection of conformational rearrangements directly at the nucleotide binding site by EPR and 2D-ESEEM (two-dimensional electron spin-echo envelope modulation spectr

机译:固氮酶铁蛋白存在下的Mn2 +-腺苷核苷酸复合物:通过EPR和2D-ESEEM(二维电子自旋回波包络调制光谱)直接在核苷酸结合位点检测构象重排

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摘要

Both ATP and a bivalent nucleotide-bound metal activator, normally Mg2+, are required for nitrogenase activity. EPR and ESEEM (electron spin-echo envelope modulation) measurements have been carried out on adenosine nucleotides in which the Mg2+ ion that is usually bound is replaced by Mn2+ in the presence of Kp2 (nitrogenase Fe-protein from Klebsiella pneumoniae). The Mn2+ zero-field splitting parameters have been determined from the EPR-spectrum to be |D|=0.0125 cm(-1) with a rhombicity lambda=E/D=0.31 by direct diagonalization of the complete spin Hamiltonian. ESEEM spectra of the Fe-protein with MnADP and MnATP both show an ESEEM line pair with one signal component at about 3.6 MHz and a relatively broad resonance at 8 MHz originating from a superhyperfine coupling to a 31P nuclear spin from one or more directly co-ordinated phospho group(s) of the nucleotide. A pronounced resonance overlapping the low-frequency component of the (31)P-signal at about 3.5 MHz is attributed to an interaction of Mn2+ with univalent 23Na nuclei. ESEEM lines at frequencies <3.5 MHz have been ascribed to interactions with 14N nuclei. Differences in the 14N features that depend on the type of nucleotide are consistent with substantial conformational rearrangements at the nucleotide-binding site upon hydrolysis. In addition, four-pulse HYSCORE (hyperfine sublevel correlation spectroscopy) experiments not only confirm the three-pulse ESEEM results, but also achieve significantly better spectral deconvolution, especially of the 31P-couplings, and demonstrate that the nucleotide is at least a unidentate ligand of Mn2+. Moreover it was also possible to identify peaks from an 14N interaction more clearly; these most probably arise from outer-sphere interactions with nitrogen atom(s) of non-co-ordinated residues which are affected by conformational rearrangements upon nucleotide hydrolysis. In addition, different redox states of the [4Fe-4S] cluster of the Fe-protein show disparate conformations of the metal-nucleotide co-ordinationenvironment, demonstrating that also the cluster site communicates with the nucleotide binding site.
机译:ATP和二价核苷酸结合的金属激活剂(通常为Mg2 +)都是固氮酶活性所必需的。已对腺苷核苷酸进行了EPR和ESEEM(电子自旋回波包络调制)测量,在这些腺苷核苷酸中,通常结合的Mg2 +离子在Kp2(肺炎克雷伯菌肺炎的硝酸酶Fe蛋白)存在下被Mn2 +取代。通过完全自旋哈密顿量的直接对角线化,已从EPR光谱确定Mn2 +零场分裂参数为| D | = 0.0125 cm(-1),菱形λ= E / D = 0.31。 Fe蛋白与MnADP和MnATP的ESEEM谱均显示一条ESEEM线对,其中一个信号成分在约3.6 MHz处,在8 MHz处具有相对较宽的共振,该共振源是由一个或多个直接共轭的31P核自旋超超细耦合引起的核苷酸的配位磷酸基团。在大约3.5 MHz处,明显的共振与(31)P信号的低频成分重叠,这归因于Mn2 +与单价23Na核的相互作用。频率<3.5 MHz的ESEEM谱线归因于与14N核的相互作用。 14N特征的差异取决于核苷酸的类型,与水解时核苷酸结合位点的基本构象重排一致。此外,四脉冲HYSCORE(超细亚级相关光谱)实验不仅证实了三脉冲ESEEM结果,而且还实现了更好的光谱去卷积(尤其是31P耦合),并证明了核苷酸至少是一个未知的配体Mn2 +。此外,还可以更清晰地从14N相互作用中识别峰。这些最可能是由于外球与非配位残基的氮原子相互作用所致,这些残基受核苷酸水解后构象重排的影响。另外,Fe蛋白的[4Fe-4S]簇的不同氧化还原状态显示金属-核苷酸配位环境的完全不同的构象,表明该簇位点也与核苷酸结合位点连通。

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