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作为血红素环境探针的FixL亚硝酰加合物

Nitrosyl adducts of FixL as probes of heme environment.

作者信息

Rodgers K R, Lukat-Rodgers G S, Tang L

机构信息

Department of Chemistry, North Dakota State University, Fargo 58105, USA.

出版信息

J Biol Inorg Chem. 2000 Oct;5(5):642-54. doi: 10.1007/s007750000150.

Abstract

This report presents a spectroscopic investigation of the nitrosyl adducts of FixL, the sensor in the signal transduction system responsible for regulating nitrogen fixation in Rhizobium meliloti. Variable-temperature resonance Raman (RR), electron spin resonance (ESR), and variable-temperature UV-visible absorption data are presented for the ferrous NO adducts of two FixL deletion derivatives, FixLN (the heme-containing domain) and FixL* (a functional heme-kinase). A temperature-dependent equilibrium is observed between the five-coordinate (5-c) and six-coordinate (6-c) ferrous nitrosyl adducts, with lower temperatures favoring formation of the 6-c nitrosyl adduct. This equilibrium is perturbed as the solution freezes, and the amount of 5-c FixL-NO increases sharply until a nearly constant ratio of 6-c to 5-c adducts is obtained. Complexation between the heme domain of FixL and its response regulator, FixJ, is revealed through specfic FixJ-induced increase in the energy separation between 5-c and 6-c FixL-NO. Ferric nitrosyl adducts of FixL* and FixLN autoreduce to their corresponding ferrous nitrosyl adducts. The kinetic behavior of this reduction is monophasic for FixL*-NO, while the reaction for ferric FixLN-NO is biphasic. These results suggest conformational inhomogeneity in the heme pocket of FixLN and conformational homogeneity in that of FixL*. Hence the kinase domain plays a role in distal pocket conformational stability. Implications for the signal transduction mechanism are discussed.

摘要

本报告展示了对FixL亚硝酰加合物的光谱研究,FixL是苜蓿根瘤菌中负责调节固氮作用的信号转导系统中的传感器。给出了两种FixL缺失衍生物(FixLN,含血红素结构域;FixL*,一种功能性血红素激酶)的亚铁-NO加合物的变温共振拉曼(RR)、电子自旋共振(ESR)和变温紫外-可见吸收数据。在五配位(5-c)和六配位(6-c)亚铁亚硝酰加合物之间观察到温度依赖性平衡,较低温度有利于6-c亚硝酰加合物的形成。当溶液冻结时,这种平衡受到扰动,5-c FixL-NO的量急剧增加,直到获得6-c与5-c加合物的近乎恒定的比例。通过FixJ诱导的5-c和6-c FixL-NO之间能量间隔的特定增加,揭示了FixL的血红素结构域与其应答调节因子FixJ之间的络合作用。FixL和FixLN的铁亚硝酰加合物自动还原为它们相应的亚铁亚硝酰加合物。对于FixL-NO,这种还原的动力学行为是单相的,而对于铁FixLN-NO的反应是双相的。这些结果表明FixLN的血红素口袋中存在构象不均匀性,而FixL*的血红素口袋中存在构象均匀性。因此,激酶结构域在远端口袋构象稳定性中起作用。讨论了对信号转导机制的影响。

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