Brudler R, de Groot H J, van Liemt W B, Gast P, Hoff A J, Lugtenburg J, Gerwert K
Lehrstuhl für Biophysik, Ruhr-Universität Bochum, Germany.
FEBS Lett. 1995 Aug 14;370(1-2):88-92. doi: 10.1016/0014-5793(95)00805-j.
The absorption frequencies of the C = O and C = C (neutral state) and of the C...O (semiquinone state) stretching vibrations of QB have been assigned by FTIR spectroscopy, using native and site-specifically 1-, 2-, 3- and 4-13C-labelled ubiquinone-10 (UQ10) reconstituted at the QB binding site of Rhodobacter sphaeroides R26 reaction centres. Besides the main C = O band at 1641 cm-1, two smaller bands are observed at 1664 and 1651 cm-1. The smaller bands at 1664 and 1651 cm-1 agree in frequencies with the 1- and 4-C = O vibrations of unbound UQ10, showing that a minor fraction is loosely and symmetrically bound to the protein. The larger band at 1641 cm-1 indicates symmetric H-bonding of the 1- and 4-C = O groups for the larger fraction of UQ10 but much weaker interaction as for the 4-C = O group of QA. The FTIR experiments show that different C = O protein interactions contribute to the factors determining the different functions of UQ10 at the QA and the QB binding sites.
利用在球形红杆菌R26反应中心的QB结合位点重构的天然及位点特异性1-、2-、3-和4-13C标记的泛醌-10(UQ10),通过傅里叶变换红外光谱(FTIR)对QB的C = O和C = C(中性态)以及C...O(半醌态)伸缩振动的吸收频率进行了归属。除了在1641 cm-1处的主要C = O谱带外,在1664和1651 cm-1处还观察到两个较小的谱带。1664和1651 cm-1处的较小谱带频率与未结合的UQ10的1-和4-C = O振动频率一致,表明一小部分以松散且对称的方式与蛋白质结合。1641 cm-1处的较大谱带表明,对于大部分UQ10而言,1-和4-C = O基团存在对称氢键作用,但与QA的4-C = O基团相比,相互作用要弱得多。FTIR实验表明,不同的C = O与蛋白质的相互作用是决定UQ10在QA和QB结合位点具有不同功能因素的一部分。