Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, PA 16802, USA.
Photosynth Res. 2012 Mar;111(3):285-90. doi: 10.1007/s11120-012-9723-z.
Phototrophs of the family Heliobacteriaceae contain the simplest known Type I reaction center (RC), consisting of a homodimeric (PshA)(2) core devoid of bound cytochromes and antenna proteins. Unlike plant and cyanobacterial Photosystem I in which the F(A)/F(B) protein, PsaC, is tightly bound to P(700)-F(X) cores, the RCs of Heliobacterium modesticaldum contain two F(A)/F(B) proteins, PshBI and PshBII, which are loosely bound to P(800)-F(X) cores. These two 2[4Fe-4S] ferredoxins have been proposed to function as mobile redox proteins, reducing downstream metabolic partners much in the same manner as does [2Fe-2S] ferredoxin or flavodoxin (Fld) in PS I. Using P(800)-F(X) cores devoid of PshBI and PshBII, we show that iron-sulfur cluster F(X) directly reduces Fld without the involvement of F(A) or F(B) (Fld is used as a proxy for soluble redox proteins even though a gene encoding Fld is not identified in the H. modesticaldum genome). The reduction of Fld is suppressed by the addition of PshBI or PshBII, an effect explained by competition for the electron on F(X). In contrast, P(700)-F(X) cores require the presence of the PsaC, and hence, the F(A)/F(B) clusters for Fld (or ferredoxin) reduction. Thus, in H. modesticaldum, the interpolypeptide F(X) cluster serves as the terminal bound electron acceptor. This finding implies that the homodimeric (PshA)(2) cores should be capable of donating electrons to a wide variety of yet-to-be characterized soluble redox partners.
噬氢菌科的光养生物含有已知最简单的 I 型反应中心 (RC),由缺少结合细胞色素和天线蛋白的同源二聚体 (PshA)(2)核心组成。与植物和蓝细菌光系统 I 不同,其中 F(A)/F(B) 蛋白 PsaC 紧密结合到 P(700)-F(X) 核心上,而噬氢杆菌的 RC 含有两个 F(A)/F(B) 蛋白 PshBI 和 PshBII,它们与 P(800)-F(X) 核心松散结合。这两个 2[4Fe-4S]铁氧还蛋白被提议作为可移动的氧化还原蛋白,以与 PS I 中的 [2Fe-2S] 铁氧还蛋白或黄素蛋白 (Fld) 相同的方式还原下游代谢伴侣。使用缺乏 PshBI 和 PshBII 的 P(800)-F(X) 核心,我们表明铁硫簇 F(X)直接还原 Fld,而不涉及 F(A)或 F(B) (即使在 H. modesticaldum 基因组中未鉴定出编码 Fld 的基因,Fld 也被用作可溶性氧化还原蛋白的代表)。添加 PshBI 或 PshBII 会抑制 Fld 的还原,这一效应可以通过 F(X)上电子的竞争来解释。相比之下,P(700)-F(X) 核心需要 PsaC 的存在,因此需要 F(A)/F(B) 簇来还原 Fld(或铁氧还蛋白)。因此,在 H. modesticaldum 中,跨肽 F(X)簇充当末端结合的电子受体。这一发现意味着同源二聚体 (PshA)(2) 核心应该能够将电子捐赠给各种尚未被描述的可溶性氧化还原伴侣。