» Articles » PMID: 12417747

Posttranslational Modifications in the CP43 Subunit of Photosystem II

Overview
Specialty Science
Date 2002 Nov 6
PMID 12417747
Citations 21
Authors
Affiliations
Soon will be listed here.
Abstract

Photosystem II (PSII) catalyzes the light-driven oxidation of water and the reduction of plastoquinone; the oxidation of water occurs at a cluster of four manganese. The PSII CP43 subunit functions in light harvesting, and mutations in the fifth luminal loop (E) of CP43 have established its importance in PSII structure and/or assembly [Kuhn, M. G. & Vermaas, V. F. J. (1993) Plant Mol. Biol. 23, 123-133]. The sequence A(350)PWLEPLR(357) in luminal loop E is conserved in CP43 genes from 50 organisms. To map important posttranslational modifications in this sequence, tandem mass spectrometry (MS/MS) was used. These data show that the indole side chain of Trp-352 is posttranslationally modified to give mass shifts of +4, +16, and +18 daltons. The masses of the modifications suggest that the tryptophan is modified to kynurenine (+4), a keto-/amino-/hydroxy- (+16) derivative, and a dihydro-hydroxy- (+18) derivative of the indole side chain. Peptide synthesis and MS/MS confirmed the kynurenine assignment. The +16 and +18 tryptophan modifications may be intermediates formed during the oxidative cleavage of the indole ring to give kynurenine. The site-directed mutations, W352C, W352L, and W352A, exhibit an increased rate of photoinhibition relative to wild type. We hypothesize that Trp-352 oxidative modifications are a byproduct of PSII water-splitting or electron transfer reactions and that these modifications target PSII for turnover. As a step toward understanding the tertiary structure of this CP43 peptide, structural modeling was performed by using molecular dynamics.

Citing Articles

Characterization of tryptophan oxidation affecting D1 degradation by FtsH in the photosystem II quality control of chloroplasts.

Kato Y, Kuroda H, Ozawa S, Saito K, Dogra V, Scholz M Elife. 2023; 12.

PMID: 37986577 PMC: 10665015. DOI: 10.7554/eLife.88822.


Redox post-translational modifications and their interplay in plant abiotic stress tolerance.

Marti-Guillen J, Pardo-Hernandez M, Martinez-Lorente S, Almagro L, Rivero R Front Plant Sci. 2022; 13:1027730.

PMID: 36388514 PMC: 9644032. DOI: 10.3389/fpls.2022.1027730.


Comprehensive Proteomic Analysis of Lysine Ubiquitination in Seedling Leaves of .

Zhan H, Song L, Kamran A, Han F, Li B, Zhou Z ACS Omega. 2020; 5(32):20122-20133.

PMID: 32832766 PMC: 7439365. DOI: 10.1021/acsomega.0c01741.


ROS-Driven Oxidative Modification: Its Impact on Chloroplasts-Nucleus Communication.

Kim C Front Plant Sci. 2020; 10:1729.

PMID: 32038693 PMC: 6990121. DOI: 10.3389/fpls.2019.01729.


Oxidative post-translational modification of EXECUTER1 is required for singlet oxygen sensing in plastids.

Dogra V, Li M, Singh S, Li M, Kim C Nat Commun. 2019; 10(1):2834.

PMID: 31249292 PMC: 6597547. DOI: 10.1038/s41467-019-10760-6.


References
1.
Aro E, Virgin I, Andersson B . Photoinhibition of Photosystem II. Inactivation, protein damage and turnover. Biochim Biophys Acta. 1993; 1143(2):113-34. DOI: 10.1016/0005-2728(93)90134-2. View

2.
Dzelzkalns V, Bogorad L . Molecular analysis of a mutant defective in photosynthetic oxygen evolution and isolation of a complementing clone by a novel screening procedure. EMBO J. 1988; 7(2):333-8. PMC: 454322. DOI: 10.1002/j.1460-2075.1988.tb02817.x. View

3.
FOWDEN L . THE CHEMISTRY AND METABOLISM OF RECENTLY ISOLATED AMINO ACIDS. Annu Rev Biochem. 1964; 33:173-204. DOI: 10.1146/annurev.bi.33.070164.001133. View

4.
Nanba O, Satoh K . Isolation of a photosystem II reaction center consisting of D-1 and D-2 polypeptides and cytochrome b-559. Proc Natl Acad Sci U S A. 1987; 84(1):109-12. PMC: 304151. DOI: 10.1073/pnas.84.1.109. View

5.
Rosenberg C, Christian J, Bricker T, Putnam-Evans C . Site-directed mutagenesis of glutamate residues in the large extrinsic loop of the photosystem II protein CP 43 affects oxygen-evolving activity and PS II assembly. Biochemistry. 2000; 38(48):15994-6000. DOI: 10.1021/bi991326r. View