Santolini Jérôme, Roman Miruna, Stuehr Dennis J, Mattioli Tony A
Département de Biologie Joliot-Curie, CEA Saclay, 91191 Gif sur Yvette Cedex, France.
Biochemistry. 2006 Feb 7;45(5):1480-9. doi: 10.1021/bi051710q.
Bacterial NO synthase (NOS)-like proteins such as that from Bacillus subtilis (bsNOS) share a high degree of structural homology with the oxygenase domain of mammalian NOSs (mNOSs), but biochemical studies have yet failed to establish that they are specifically capable of producing NO. To better understand the actual function and role of bacterial NOSs, the structure and environment of bsNOS heme were examined with resonance Raman (RR) and ATR-FTIR spectroscopies. We analyzed the structural effects of l-arginine (Arg) and tetrahydrobiopterin (H(4)B) binding on several key complexes (ferric, ferrous, ferrous-CO, and ferric-NO) and characterized the bonding properties of the proximal cysteine ligand. While our study fully confirms the similarity between bsNOS and mNOS heme pocket structures, our results also highlight important differences. (i) Contrary to other NOSs, resting native ferric bsNOS exhibits an exclusive five-coordinate high-spin iron status. (ii) The nu(Fe)(-)(CO) and nu(CO) mode frequencies of the bsNOS Fe(II)CO complexes indicate a weaker electrostatic interaction between Arg and CO. (iii) bsNOS is characterized by a stronger Fe-S bond (nu(Fe)(-)(S) = 342 cm(-)(1)), a lower nu(4) frequency, and a negative shift in the nu(Fe)(-)(CO)/nu(CO) correlation. (iv) The effects of H(4)B on bsNOS heme structure are minor compared to the ones reported on mNOS. These results suggest distinct distal heme environments between mNOS and bsNOS, greater electron-donation properties of bsNOS cysteine proximal ligand, and the absence of a significant influence of H(4)B on bsNOS heme properties. These subtle structural differences may reflect changes in the chemistry and physiological role of bacterial NOSs.
细菌一氧化氮合酶(NOS)样蛋白,如来自枯草芽孢杆菌的蛋白(bsNOS),与哺乳动物NOS(mNOS)的加氧酶结构域具有高度的结构同源性,但生化研究尚未证实它们能够特异性地产生NO。为了更好地理解细菌NOS的实际功能和作用,我们用共振拉曼(RR)光谱和衰减全反射傅里叶变换红外(ATR-FTIR)光谱研究了bsNOS血红素的结构和环境。我们分析了L-精氨酸(Arg)和四氢生物蝶呤(H(4)B)结合对几种关键复合物(铁离子、亚铁离子、亚铁-CO和铁离子-NO)的结构影响,并对近端半胱氨酸配体的键合特性进行了表征。虽然我们的研究充分证实了bsNOS和mNOS血红素口袋结构之间的相似性,但我们的结果也突出了重要的差异。(i)与其他NOS不同,静止的天然铁离子bsNOS呈现出唯一的五配位高自旋铁状态。(ii)bsNOS Fe(II)CO复合物的ν(Fe)(-)(CO)和ν(CO)模式频率表明Arg和CO之间的静电相互作用较弱。(iii)bsNOS的特征是具有更强的Fe-S键(ν(Fe)(-)(S)=342 cm(-)(1))、更低的ν(4)频率以及ν(Fe)(-)(CO)/ν(CO)相关性的负向偏移。(iv)与mNOS报道的结果相比,H(4)B对bsNOS血红素结构的影响较小。这些结果表明mNOS和bsNOS之间存在不同的远端血红素环境,bsNOS半胱氨酸近端配体具有更强的电子给予性质,并且H(4)B对bsNOS血红素性质没有显著影响。这些细微的结构差异可能反映了细菌NOS化学性质和生理作用的变化。