Deniau Clarisse, Gilli Robert, Izadi-Pruneyre Nadia, Létoffé Sylvie, Delepierre Muriel, Wandersman Cécile, Briand Claudette, Lecroisey Anne
Unité de Résonance Magnétique Nucléaire des Biomolécules, CNRS URA 2185, Institut Pasteur, Paris, France.
Biochemistry. 2003 Sep 16;42(36):10627-33. doi: 10.1021/bi030015k.
HasA(SM) secreted by the Gram-negative bacterium Serratia marcescens belongs to the hemophore family. Its role is to take up heme from host heme carriers and to shuttle it to specific receptors. Heme is linked to the HasA(SM) protein by an unusual axial ligand pair: His32 and Tyr75. The nucleophilic nature of the tyrosine is enhanced by the hydrogen bonding of the tyrosinate to a neighboring histidine in the binding site: His83. We used isothermal titration microcalorimetry to examine the thermodynamics of heme binding to HasA(SM) and showed that binding is strongly exothermic and enthalpy driven: DeltaH = -105.4 kJ x mol(-1) and TDeltaS = -44.3 kJ x mol(-1). We used displacement experiments to determine the affinity constant of HasA(SM) for heme (K(a) = 5.3 x 10(10) M(-1)). This is the first time that this has been reported for a hemophore. We also analyzed the thermodynamics of the interaction between heme and a panel of single, double, and triple mutants of the two axial ligands His32 and Tyr75 and of His83 to assess the implication of each of these three residues in heme binding. We demonstrated that, in contrast to His32, His83 is essential for the binding of heme to HasA(SM), even though it is not directly coordinated to iron, and that the Tyr75/His83 pair plays a key role in the interaction.
革兰氏阴性菌粘质沙雷氏菌分泌的HasA(SM)属于血色素蛋白家族。其作用是从宿主血色素载体中摄取血红素,并将其转运至特定受体。血红素通过一组不同寻常的轴向配体对与HasA(SM)蛋白相连:His32和Tyr75。酪氨酸的亲核性通过酪氨酸盐与结合位点中相邻组氨酸His83的氢键作用得到增强。我们使用等温滴定量热法研究了血红素与HasA(SM)结合的热力学过程,结果表明结合过程是强烈放热且由焓驱动的:ΔH = -105.4 kJ·mol⁻¹,TΔS = -44.3 kJ·mol⁻¹。我们通过置换实验确定了HasA(SM)对血红素的亲和常数(Kₐ = 5.3×10¹⁰ M⁻¹)。这是首次针对血色素蛋白报道该亲和常数。我们还分析了血红素与两个轴向配体His32和Tyr75以及His83的一系列单突变体(single mutants)、双突变体(double mutants)和三突变体(triple mutants)之间相互作用的热力学过程,以评估这三个残基中每个残基在血红素结合中的作用。我们证明,与His32不同,His83对血红素与HasA(SM)的结合至关重要,尽管它并不直接与铁配位,并且Tyr75/His83配体对在相互作用中起关键作用。