Vassiliev I R, Ronan M T, Hauska G, Golbeck J H
Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park 16802, USA.
Biophys J. 2000 Jun;78(6):3160-9. doi: 10.1016/S0006-3495(00)76852-4.
The photosynthetic reaction center (RC) of green sulfur bacteria contains two [4Fe-4S] clusters named F(A) and F(B), by analogy with photosystem I (PS I). PS I also contains an interpolypeptide [4Fe-4S] cluster named F(X); however, spectroscopic evidence for an analogous iron-sulfur cluster in green sulfur bacteria remains equivocal. To minimize oxidative damage to the iron-sulfur clusters, we studied the sensitivity of F(A) and F(B) to molecular oxygen in whole cells of Chlorobium vibrioforme and Chlorobium tepidum and obtained highly photoactive membranes and RCs from Cb. tepidum by adjusting isolation conditions to maximize the amplitude of the F(A)(-)/F(B)(-) electron paramagnetic resonance signal at g = 1.89 (measured at 126 mW of microwave power and 14 K) relative to the P840(+) signal at g = 2.0028 (measured at 800 microW of microwave power and 14 K). In these optimized preparations we were able to differentiate F(X)(-) from F(A)(-)/F(B)(-) by their different relaxation properties. At temperatures between 4 and 9 K, isolated membranes and RCs of Cb. tepidum show a broad peak at g = 2.12 and a prominent high-field trough at g = 1.76 (measured at 126 mW of microwave power). The complete g-tensor of F(X)(-), extracted by numerical simulation, yields principal values of 2.17, 1.92, and 1. 77 and is similar to F(X) in PS I. An important difference from PS I is that because the bound cytochrome is available as a fast electron donor in Chlorobium, it is not necessary to prereduce F(A) and F(B) to photoaccumulate F(X)(-).
绿硫细菌的光合反应中心(RC)含有两个名为F(A)和F(B)的[4Fe-4S]簇,这是类比光系统I(PS I)命名的。PS I还含有一个名为F(X)的多肽间[4Fe-4S]簇;然而,绿硫细菌中类似铁硫簇的光谱证据仍然不明确。为了尽量减少对铁硫簇的氧化损伤,我们研究了F(A)和F(B)对绿弯菌(Chlorobium vibrioforme)和嗜热绿菌(Chlorobium tepidum)全细胞中分子氧的敏感性,并通过调整分离条件,从嗜热绿菌中获得了高光活性的膜和RC,以相对于g = 2.0028处的P840(+)信号(在800微瓦微波功率和14 K下测量)最大化g = 1.89处F(A)(-)/F(B)(-)电子顺磁共振信号的幅度(在126毫瓦微波功率和14 K下测量)。在这些优化的制备物中,我们能够通过它们不同的弛豫特性区分F(X)(-)和F(A)(-)/F(B)(-)。在4到9 K的温度下,嗜热绿菌的分离膜和RC在g = 2.12处显示出一个宽峰,在g = 1.76处显示出一个突出的高场谷(在126毫瓦微波功率下测量)。通过数值模拟提取的F(X)(-)的完整g张量产生的主值为2.17、1.92和1.77,与PS I中的F(X)相似。与PS I的一个重要区别是,由于结合的细胞色素在绿菌中可作为快速电子供体,因此不需要预先还原F(A)和F(B)来光积累F(X)(-)。