Structural basis for the assembly and energy transfer between the cyanobacterial PSI core and the double-layered IsiA proteins

L Long Si Y Yingyue Zhang (Center for Bioanalytical Chemistry, Hefei National Laboratory of Physical Science at Microscale) X Xiaodong Su X Xuelin Zhao X Xiaomin An L Lu-Ning Liu (Institute of Systems, Molecular and Integrative Biology, University of Liverpool) P Peng Cao M Mei Li

Abstract

Abstract Iron-limitation is a common stress factor in natural environments. To survive under iron-starved conditions, cyanobacteria overexpress iron stress-induced protein A (IsiA), which is crucial for light-harvesting and photoprotection. Multiple IsiA proteins form a single- or double-layered architecture encircling the photosystem I (PSI) core, forming various PSI-IsiA supercomplexes. The assembly and energy transfer mechanisms of double-layered PSI-IsiA supercomplexes remain unelucidated. Here, we present high-resolution structures of two PSI-IsiA supercomplexes isolated from the cyanobacterium Thermosynechococcus elongatus BP-1 cultured under iron-starved conditions. The PSI 3 -IsiA 43 complex contains a trimeric PSI core surrounded by 43 IsiA subunits assembled into a closed double-ring. The PSI 1 -IsiA 13 complex contains 13 IsiA proteins arranged in a double-layered architecture attached to the monomeric PSI core. Atomic force microscopy demonstrates the presence and distribution of different PSI-IsiA complexes within native thylakoid membranes isolated from iron-starved cells. Our findings provide insights into the structural variability and adaptive mechanisms of PSI-IsiA complexes.

Article Details

Volume / Issue Vol. 17, Issue 1
Published December 20, 2025
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (8)

L

Long Si

Y

Yingyue Zhang

Center for Bioanalytical Chemistry, Hefei National Laboratory of Physical Science at Microscale

X

Xiaodong Su

X

Xuelin Zhao

X

Xiaomin An

L

Lu-Ning Liu

Institute of Systems, Molecular and Integrative Biology, University of Liverpool

P

Peng Cao

M

Mei Li