4.5 Article

PSII-LHCII Supercomplex Organizations in Photosynthetic Membrane by Coarse-Grained Simulation

期刊

JOURNAL OF PHYSICAL CHEMISTRY B
卷 119, 期 10, 页码 3999-4008

出版社

AMER CHEMICAL SOC
DOI: 10.1021/jp511277c

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资金

  1. Academia Sinica of Taiwan R.O.C.
  2. elite American universities and research institutes
  3. National Science Council of Taiwan [99-2112-M-001-004-MY3, 102-2628-M-001-004-MY3]
  4. Academia Sinica Thematic Project [AS-103-SS-A02]
  5. FWP-SISGRKN from Chemical Sciences, Geosciences and Biosciences Division, Office of Basic Energy Sciences, Office of Science, U.S. Department of Energy

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Green plant Photosystem II (PSII) and light-harvesting complex II (LHCLI) in the stacked grana regions of thylakoid membranes can self-organize into various PSII LHCII supercomplexes With crystalline Of fluid-like supramolecular structures to adjust themselves with external stimuli suth as high/low light and 'temperatures, reuclering tunable solar light absorption spectrum and photosynthesis efficiencies. However, the mechanisms controlling the PSII LHCH Supercomplex organizations remain elusive: In this work, We constructed a coarse-grained (CO) model of the thylakoid membrane including lipid molecules and a PSII LHCII supercomplex considering association/dissociation of moderately bound-LHCHs. The CG interaction between CG beads were constructed based on electron microscope (EM) experimental results, and we were able to Simulate the PSII LHCII supramolecular organization of a 500 X 500 nm(2) thylakoid membrane, which is compatible with experiments. Our CGMD simulations can successfully reproduce order structures of PSII LHCII supercomplexes under various protein packing fractions, free-LHCII:PSII ratios, and temperatures, thereby providing insights into mechanisms leading to PSH LHCII stipercornplex organizations in photosynthetic membranes.

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