Author:
Nagao Ryo,Kato Koji,Hamaguchi Tasuku,Ueno Yoshifumi,Tsuboshita Naoki,Shimizu Shota,Furutani Miyu,Ehira Shigeki,Nakajima Yoshiki,Kawakami Keisuke,Suzuki Takehiro,Dohmae Naoshi,Akimoto Seiji,Yonekura Koji,Shen Jian-Ren
Abstract
AbstractIron-stress-induced-A proteins (IsiAs) are expressed in cyanobacteria under iron-deficient conditions. The cyanobacterium Anabaena sp. PCC 7120 has four isiA genes; however, their binding property and functional roles in PSI are still missing. We analyzed a cryo-electron microscopy structure of a PSI-IsiA supercomplex isolated from Anabaena grown under an iron-deficient condition. The PSI-IsiA structure contains six IsiA subunits associated with the PsaA side of a PSI core monomer. Three of the six IsiA subunits are identified as IsiA1 and IsiA2. The PSI-IsiA structure lacks a PsaL subunit; instead, a C-terminal domain of IsiA2 is inserted at the position of PsaL, which inhibits the oligomerization of PSI, leading to the formation of a monomer. Furthermore, excitation-energy transfer from IsiAs to PSI appeared with a time constant of 55 ps. These findings provide novel insights into both the molecular assembly of the Anabaena IsiA family and the functional roles of IsiAs.
Publisher
Cold Spring Harbor Laboratory