Chitnis V P, Chitnis P R
Division of Biology, Kansas State University, Manhattan 66506-4901.
FEBS Lett. 1993 Dec 27;336(2):330-4. doi: 10.1016/0014-5793(93)80831-e.
When membranes of the wild type strain of the cyanobacterium Synechocystis sp. PCC 6803 were solubilized with detergents and fractionated by sucrose-gradient ultracentrifugation, photosystem I could be obtained as trimers and monomers. We could not obtain trimers from the membranes of any mutant strain that lacked PsaL subunit. In contrast, absence of PsaE, PsaD, PsaF, or PsaJ did not completely abolish the ability of photosystem I to form trimers. Furthermore, PsaL is accessible to digestion by thermolysin in the monomers but not in the trimers of photosystem I purified from wild type membranes. Therefore, PsaL is necessary for trimerization of photosystem I and may constitute the trimer-forming domain in the structure of photosystem I.
当用去污剂溶解蓝藻集胞藻6803野生型菌株的膜,并通过蔗糖梯度超速离心进行分级分离时,光系统I可以以三聚体和单体的形式获得。我们无法从任何缺乏PsaL亚基的突变菌株的膜中获得三聚体。相比之下,缺乏PsaE、PsaD、PsaF或PsaJ并没有完全消除光系统I形成三聚体的能力。此外,在从野生型膜中纯化的光系统I的单体中,PsaL可被嗜热菌蛋白酶消化,而在三聚体中则不能。因此,PsaL是光系统I三聚化所必需的,并且可能在光系统I的结构中构成三聚体形成结构域。