Wolff Nicolas, Deniau Clarisse, Létoffé Sylvie, Simenel Catherine, Kumar Veena, Stojiljkovic Igor, Wandersman Cécile, Delepierre Muriel, Lecroisey Anne
Unité de Résonance Magnétique Nucléaire des Biomolécules, CNRS URA 2185, Institut Pasteur, Paris, France.
Protein Sci. 2002 Apr;11(4):757-65. doi: 10.1110/ps.3630102.
The HasA(SM) hemophore, secreted by Serratia marcescens, binds free or hemoprotein bound heme with high affinity and delivers it to a specific outer membrane receptor, HasR. In HasA(SM), heme is held by two loops and coordinated to iron by two residues, His 32 and Tyr 75. A third residue His 83 was shown recently to play a crucial role in heme ligation. To address the mechanistic issues of the heme capture and release processes, the histidine protonation states were studied in both apo- and holo-forms of HasA(SM) in solution. Holo-HasA(SM) was formed with gallium-protoporphyrin IX (GaPPIX), giving rise to a diamagnetic protein. By use of heteronuclear correlation NMR spectroscopy, the imidazole side-chain (15)N and (1)H resonances of the six HasA(SM) histidines were assigned and their pKa values and predominant tautomeric states according to pH were determined. We show that protonation states of the heme pocket histidines can modulate the nucleophilic character of the two axial ligands and, consequently, control the heme binding. In particular, the essential role of the His 83 is emphasized according to its direct interaction with Tyr 75.
粘质沙雷氏菌分泌的HasA(SM) 载血红素蛋白能以高亲和力结合游离的或与血红蛋白结合的血红素,并将其递送至特定的外膜受体HasR。在HasA(SM) 中,血红素由两个环固定,并通过His 32和Tyr 75两个残基与铁配位。最近研究表明,第三个残基His 83在血红素连接中起关键作用。为了解决血红素捕获和释放过程的机制问题,研究了溶液中HasA(SM) 的脱辅基形式和全蛋白形式中组氨酸的质子化状态。全蛋白形式的HasA(SM) 由镓原卟啉IX(GaPPIX)形成,产生一种抗磁性蛋白。通过使用异核相关核磁共振波谱,确定了HasA(SM) 六个组氨酸的咪唑侧链的(15)N和(1)H共振,并根据pH值确定了它们的pKa值和主要互变异构状态。我们表明,血红素口袋中组氨酸的质子化状态可以调节两个轴向配体的亲核特性,从而控制血红素的结合。特别是,根据His 83与Tyr 75的直接相互作用,强调了其重要作用。