Ivanov Y D, Usanov S A, Archakov A I
Institute of Biomedical Chemistry RAMS, Moscow, Russia.
Biochem Mol Biol Int. 1999 Feb;47(2):327-36. doi: 10.1080/15216549900201353.
The formation of individual complexes between the components of cholesterol side chain cleavage system-cytochrome P450scc, adrenodoxin (Ad) and adrenodoxin reductase (AdR) was kinetically characterized and their association and dissociation rate constants were measured by optical biosensor. The dominant role of interprotein electrostatic interactions in productive complex formation was demonstrated. Despite of the fact that P450scc and AdR complete for the binding with the same or closely placed negatively charged groups on the surface of immobilized Ad, the formation of the AdR/P450scc/Ad ternary complex upon AdR immobilization on dextran was registered. It is shown, that Ad does not bind to AdR immobilized via amino groups AdRim but it is possible only after the preliminary binding of P450scc to AdRim. The life time of such ternary complex, about 15 s, is sufficient for the realization of 5-8 catalytic cycles.
对胆固醇侧链裂解系统的组分——细胞色素P450scc、肾上腺皮质铁氧还蛋白(Ad)和肾上腺皮质铁氧还蛋白还原酶(AdR)之间形成的个体复合物进行了动力学表征,并通过光学生物传感器测量了它们的缔合和解离速率常数。证明了蛋白质间静电相互作用在有效复合物形成中的主导作用。尽管P450scc和AdR竞争与固定化Ad表面相同或紧密相邻的带负电荷基团结合,但在AdR固定在葡聚糖上时,记录到了AdR/P450scc/Ad三元复合物的形成。结果表明,Ad不与通过氨基固定的AdR(AdRim)结合,但只有在P450scc预先与AdRim结合后才有可能。这种三元复合物的寿命约为15秒,足以实现5 - 8个催化循环。