Nogi T, Fathir I, Kobayashi M, Nozawa T, Miki K
Department of Chemistry, Graduate School of Science, Kyoto University, Sakyo-ku, Kyoto 606-8502, Japan.
Proc Natl Acad Sci U S A. 2000 Dec 5;97(25):13561-6. doi: 10.1073/pnas.240224997.
The reaction center (RC) of photosynthetic bacteria is a membrane protein complex that promotes a light-induced charge separation during the primary process of photosynthesis. In the photosynthetic electron transfer chain, the soluble electron carrier proteins transport electrons to the RC and reduce the photo-oxidized special-pair of bacteriochlorophyll. The high-potential iron-sulfur protein (HiPIP) is known to serve as an electron donor to the RC in some species, where the c-type cytochrome subunit, the peripheral subunit of the RC, directly accepts electrons from the HiPIP. Here we report the crystal structures of the RC and the HiPIP from Thermochromatium (Tch.) tepidum, at 2.2-A and 1.5-A resolution, respectively. Tch. tepidum can grow at the highest temperature of all known purple bacteria, and the Tch. tepidum RC shows some degree of stability to high temperature. Comparison with the RCs of mesophiles, such as Blastochloris viridis, has shown that the Tch. tepidum RC possesses more Arg residues at the membrane surface, which might contribute to the stability of this membrane protein. The RC and the HiPIP both possess hydrophobic patches on their respective surfaces, and the HiPIP is expected to interact with the cytochrome subunit by hydrophobic interactions near the heme-1, the most distal heme to the special-pair.
光合细菌的反应中心(RC)是一种膜蛋白复合物,在光合作用的初级过程中促进光诱导的电荷分离。在光合电子传递链中,可溶性电子载体蛋白将电子传递到反应中心,并还原光氧化的细菌叶绿素特殊对。已知在某些物种中,高电位铁硫蛋白(HiPIP)作为反应中心的电子供体,其中反应中心的外周亚基c型细胞色素亚基直接从HiPIP接受电子。在此,我们分别报道了嗜热栖热菌(Tch. tepidum)反应中心和HiPIP的晶体结构,分辨率分别为2.2埃和1.5埃。嗜热栖热菌能在所有已知紫色细菌的最高温度下生长,其反应中心对高温表现出一定程度的稳定性。与嗜温菌如绿囊色菌(Blastochloris viridis)的反应中心相比,嗜热栖热菌反应中心在膜表面具有更多的精氨酸残基,这可能有助于这种膜蛋白的稳定性。反应中心和HiPIP在各自表面均具有疏水区域,预计HiPIP通过靠近血红素-1(离特殊对最远的血红素)的疏水相互作用与细胞色素亚基相互作用。