Kent T A, Münck E, Dunham W R, Filter W F, Findling K L, Yoshida T, Fee J A
J Biol Chem. 1982 Nov 10;257(21):12489-92.
Cytochrome c1aa3 from Thermus thermophilus has optical and EPR properties similar to bovine cytochrome c oxidase. We have studied 87Fe-enriched samples with Mössbauer spectroscopy in the fully oxidized and fully reduced states and in the oxidized state complexed with cyanide. The cytochromes a and c1 yielded spectra quite similar to those reported for the cytochromes c and b5; in the oxidized state the spectra reflect noninteracting, low spin ferric hemes, whereas the a- and c1-sites of the reduced enzyme are typical of low spin ferrous hemochromes. The spectra of the reduced enzyme show that reduced cytochrome a3 is high spin ferrous, with Mössbauer parameters quite similar to those of deoxymyoglobin. Upon addition of cyanide to the oxidized enzyme, the a3-site exhibits in the absence of an applied magnetic field and at temperatures down to 1.3 K a quadrupole doublet with parameters typical of low spin ferric heme-CN complexes. The low temperature spectra taken in applied magnetic fields show that the electronic ground state of the a3-CN complex has integer electronic spin, suggesting ferromagnetic coupling of the low spin ferric heme (S = 1/2) to Cu2+ (S = 1/2) to yield as S = 1 ground state. We have examined the oxidized enzyme from two different preparations. Both had good activity and identical optical and EPR spectra. The Mössbauer spectra, however, revealed that the a3-site had a substantially different electronic structure in the two preparations. Neither configuration had properties in accord with the widely accepted spin-coupling model proposed for the bovine enzyme.
嗜热栖热菌的细胞色素c1aa3具有与牛细胞色素c氧化酶相似的光学和电子顺磁共振特性。我们用穆斯堡尔谱研究了87Fe富集样品在完全氧化态、完全还原态以及与氰化物络合的氧化态下的情况。细胞色素a和c1产生的光谱与报道的细胞色素c和b5的光谱非常相似;在氧化态下,光谱反映出非相互作用的低自旋铁血红素,而还原酶的a和c1位点是典型的低自旋亚铁血红素。还原酶的光谱表明,还原态的细胞色素a3是高自旋亚铁,其穆斯堡尔参数与脱氧肌红蛋白的非常相似。向氧化酶中加入氰化物后,在没有外加磁场且温度低至1.3K的情况下,a3位点呈现出具有低自旋铁血红素 - CN络合物典型参数的四极双峰。在外加磁场下测得的低温光谱表明,a3 - CN络合物的电子基态具有整数电子自旋,这表明低自旋铁血红素(S = 1/2)与Cu2 +(S = 1/2)发生铁磁耦合,产生S = 1的基态。我们检查了来自两种不同制备方法的氧化酶。两者都具有良好的活性以及相同的光学和电子顺磁共振光谱。然而,穆斯堡尔光谱显示,两种制备方法中a3位点的电子结构有很大不同。两种构型都不具有与广泛接受的牛酶自旋耦合模型相符的特性。