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5.B.4.1.1
The plant photosystem I (PSI) supercomplex at 3.4 Å resolution (Amunts et al., 2007). It contains 4 light harvesting chlorophyll a/b binding proteins as well as 13 additional constituents. One helix (TMS) proteins, OHP1 (O81208) amd OHP2 (Q9FEC1) play an essential role in the assembly or stabilization of photosynthetic pigment-protein complexes, especially photosystem reaction centers, in the thylakoid membrane (Beck et al. 2017). PSI consists of two complexes, a reaction center and light-harvesting complex (LHC), which together form the PSI-LHC supercomplex. The crystal structure of plant PSI has been solved with two distinct crystal forms. The first, crystallized at pH 6.5, exhibited P21 symmetry; the second, crystallized at pH 8.5, exhibited P212121 symmetry. The surfaces involved in binding plastocyanin and ferredoxin were identical in both forms. The crystal structure at 2.6 Å resolution revealed 16 subunits, 45 transmembrane helices, and 232 prosthetic groups, including 143 chlorophyll a, 13 chlorophyll b, 27 beta-carotene, 7 lutein, 2 xanthophyll, 1 zeaxanthin, 20 monogalactosyl diglyceride, 7 phosphatidyl diglyceride, 5 digalactosyl diglyceride, 2 calcium ions, 2 phylloquinone, and 3 iron sulfur clusters (Caspy and Nelson 2018). The model revealed detailed interactions, providing mechanisms for excitation energy transfer and its modulation in one of nature's most efficient photochemical machine. The photoexcitation response of cyanobacterial Photosystem I has been studied following reconstitution in proteoliposomes (Niroomand et al. 2017).  The structure of the red algal phycobilisome-PSII-PSI-LHC megacomplex has been determined (You et al. 2023). In oxygenic photosynthetic organisms, light energy is captured by antenna systems and transferred to photosystem II (PSII) and photosystem I (PSI) to drive photosynthesis. The antenna systems of red algae consist of soluble phycobilisomes (PBSs) and transmembrane light-harvesting complexes (LHCs). Excitation energy transfer pathways from PBS to photosystems remain unclear owing to the lack of structural information. You et al. 2023 presented in situ structures of PBS-PSII-PSI-LHC megacomplexes from the red alga Porphyridium purpureum at near-atomic resolution using cryoEM and in situ single-particle analysis, providing interaction details between PBS, PSII and PSI. The structures reveal several unidentified and incomplete proteins and their roles in the assembly of the megacomplex, as well as a huge and sophisticated pigment network, providing a solid structural basis for unravelling the mechanisms of PBS-PSII-PSI-LHC megacomplex assembly, efficient energy transfer from PBS to the two photosystems, and regulation of energy distribution between PSII and PSI (You et al. 2023).

Accession Number:P56766
Protein Name:Photosystem I P700 chlorophyll a apoprotein A1 aka PsaA
Length:750
Molecular Weight:83231.00
Species:Arabidopsis thaliana (Mouse-ear cress) [3702]
Number of TMSs:11
Location1 / Topology2 / Orientation3: Plastid1 / Multi-pass membrane protein2
Substrate electron

Cross database links:

RefSeq: NP_051059.1   
Entrez Gene ID: 844768   
Pfam: PF00223   
KEGG: ath:ArthCp022   

Gene Ontology

GO:0009535 C:chloroplast thylakoid membrane
GO:0016021 C:integral to membrane
GO:0009522 C:photosystem I
GO:0051539 F:4 iron, 4 sulfur cluster binding
GO:0016168 F:chlorophyll binding
GO:0009055 F:electron carrier activity
GO:0000287 F:magnesium ion binding
GO:0022900 P:electron transport chain
GO:0015979 P:photosynthesis
GO:0018298 P:protein-chromophore linkage
GO:0006810 P:transport

References (1)

[1] “Complete structure of the chloroplast genome of Arabidopsis thaliana.”  Sato S.et.al.   10574454
Structure:
2o01   2wsc   3lw5   4xk8   4y28     

External Searches:

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Predict TMSs (Predict number of transmembrane segments)
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FASTA formatted sequence
1:	MIIRSPEPEV KILVDRDPIK TSFEEWAKPG HFSRTIAKGP DTTTWIWNLH ADAHDFDSHT 
61:	SDLEEISRKV FSAHFGQLSI IFLWLSGMYF HGARFSNYEA WLSDPTHIGP SAQVVWPIVG 
121:	QEILNGDVGG GFRGIQITSG FFQIWRASGI TSELQLYCTA IGALVFAALM LFAGWFHYHK 
181:	AAPKLAWFQD VESMLNHHLA GLLGLGSLSW AGHQVHVSLP INQFLNAGVD PKEIPLPHEF 
241:	ILNRDLLAQL YPSFAEGATP FFTLNWSKYS EFLTFRGGLD PVTGGLWLTD IAHHHLAIAI 
301:	LFLIAGHMYR TNWGIGHGIK DILEAHKGPF TGQGHKGLYE ILTTSWHAQL SLNLAMLGSL 
361:	TIIVAHHMYS MPPYPYLATD YATQLSLFTH HMWIGGFLIV GAAAHAAIFM VRDYDPTNRY 
421:	NDLLDRVLRH RDAIISHLNW VCIFLGFHSF GLYIHNDTMS ALGRPQDMFS DTAIQLQPVF 
481:	AQWIQNTHAL APGVTAPGET ASTSLTWGGG ELVAVGGKVA LLPIPLGTAD FLVHHIHAFT 
541:	IHVTVLILLK GVLFARSSRL IPDKANLGFR FPCDGPGRGG TCQVSAWDHV FLGLFWMYNA 
601:	ISVVIFHFSW KMQSDVWGSI SDQGVVTHIT GGNFAQSSIT INGWLRDFLW AQASQVIQSY 
661:	GSSLSAYGLF FLGAHFVWAF SLMFLFSGRG YWQELIESIV WAHNKLKVAP ATQPRALSII 
721:	QGRAVGVTHY LLGGIATTWA FFLARIIAVG