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首页> 外文期刊>FEBS letters. >Electron transfer in a human inducible nitric oxide synthase oxygenase/FMN construct co-expressed with the N-terminal globular domain of calmodulin.
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Electron transfer in a human inducible nitric oxide synthase oxygenase/FMN construct co-expressed with the N-terminal globular domain of calmodulin.

机译:人诱导型一氧化氮合酶加氧酶/ FMN构建体中的电子转移与钙调蛋白的N端球状结构域共表达。

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摘要

The FMN-heme intraprotein electron transfer (IET) kinetics in a human inducible NOS (iNOS) oxygenase/FMN (oxyFMN) construct co-expressed with NCaM, a truncated calmodulin (CaM) construct that includes only its N-terminal globular domain consisting of residues 1-75, were determined by laser flash photolysis. The IET rate constant is significantly decreased by nearly fourfold (compared to the iNOS oxyFMN co-expressed with full length CaM). This supports an important role of full length CaM in proper interdomain FMN/heme alignment in iNOS. The IET process was not observed with added excess EDTA, suggesting that Ca(2+) depletion results in the FMN domain moving away from the heme domain. The results indicate that a Ca(2+)-dependent reorganization of the truncated CaM construct could cause a major modification of the NCaM/iNOS association resulting in a loss of the IET.
机译:与NCaM共表达的人诱导型NOS(iNOS)加氧酶/ FMN(oxyFMN)结构中的FMN血红素蛋白内电子转移(IET)动力学,NCaM是截短的钙调蛋白(CaM)结构,仅包括其N端球状结构通过激光闪光光解法测定残留物1-75。 IET速率常数显着降低了近四倍(与全长CaM共表达的iNOS oxyFMN相比)。这支持了全长CaM在iNOS中正确域间FMN /血红素对齐中的重要作用。没有观察到添加过量的EDTA的IET过程,这表明Ca(2+)耗尽会导致FMN域从血红素域移开。结果表明截断的CaM构建的Ca(2+)依赖重组可能会导致NCaM / iNOS关联的重大修改,从而导致IET的丢失。

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