Literature DB >> 24151299

Evidence for a role of chloroplastic m-type thioredoxins in the biogenesis of photosystem II in Arabidopsis.

Peng Wang1, Jun Liu, Bing Liu, Dongru Feng, Qingen Da, Peng Wang1, Shengying Shu, Jianbin Su, Yang Zhang, Jinfa Wang, Hong-Bin Wang.   

Abstract

Chloroplastic m-type thioredoxins (TRX m) are essential redox regulators in the light regulation of photosynthetic metabolism. However, recent genetic studies have revealed novel functions for TRX m in meristem development, chloroplast morphology, cyclic electron flow, and tetrapyrrole synthesis. The focus of this study is on the putative role of TRX m1, TRX m2, and TRX m4 in the biogenesis of the photosynthetic apparatus in Arabidopsis (Arabidopsis thaliana). To that end, we investigated the impact of single, double, and triple TRX m deficiency on chloroplast development and the accumulation of thylakoid protein complexes. Intriguingly, only inactivation of three TRX m genes led to pale-green leaves and specifically reduced stability of the photosystem II (PSII) complex, implying functional redundancy between three TRX m isoforms. In addition, plants silenced for three TRX m genes displayed elevated levels of reactive oxygen species, which in turn interrupted the transcription of photosynthesis-related nuclear genes but not the expression of chloroplast-encoded PSII core proteins. To dissect the function of TRX m in PSII biogenesis, we showed that TRX m1, TRX m2, and TRX m4 interact physically with minor PSII assembly intermediates as well as with PSII core subunits D1, D2, and CP47. Furthermore, silencing three TRX m genes disrupted the redox status of intermolecular disulfide bonds in PSII core proteins, most notably resulting in elevated accumulation of oxidized CP47 oligomers. Taken together, our results suggest an important role for TRX m1, TRX m2, and TRX m4 proteins in the biogenesis of PSII, and they appear to assist the assembly of CP47 into PSII.

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Year:  2013        PMID: 24151299      PMCID: PMC3850194          DOI: 10.1104/pp.113.228353

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  100 in total

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Review 3.  The dynamics of photosynthesis.

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Journal:  Annu Rev Genet       Date:  2008       Impact factor: 16.830

4.  The thylakoid protease Deg1 is involved in photosystem-II assembly in Arabidopsis thaliana.

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Journal:  Plant J       Date:  2010-01-18       Impact factor: 6.417

5.  Isolation of high-chlorophyll-fluorescence mutants of Arabidopsis thaliana and their characterisation by spectroscopy, immunoblotting and northern hybridisation.

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6.  Biogenesis of the chloroplast-encoded D1 protein: regulation of translation elongation, insertion, and assembly into photosystem II.

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7.  Control of Arabidopsis meristem development by thioredoxin-dependent regulation of intercellular transport.

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  29 in total

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2.  Thioredoxin and NADPH-Dependent Thioredoxin Reductase C Regulation of Tetrapyrrole Biosynthesis.

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5.  Thioredoxin f1 and NADPH-Dependent Thioredoxin Reductase C Have Overlapping Functions in Regulating Photosynthetic Metabolism and Plant Growth in Response to Varying Light Conditions.

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6.  Two distinct redox cascades cooperatively regulate chloroplast functions and sustain plant viability.

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Journal:  Proc Natl Acad Sci U S A       Date:  2016-06-22       Impact factor: 11.205

7.  Photosynthetic characterization of transgenic Synechocystis expressing a plant thiol/disulfide-modulating protein.

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Journal:  Plant Signal Behav       Date:  2019-12-31

8.  ARSENATE INDUCED CHLOROSIS 1/ TRANSLOCON AT THE OUTER ENVOLOPE MEMBRANE OF CHLOROPLASTS 132 Protects Chloroplasts from Arsenic Toxicity.

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9.  M-type thioredoxins are involved in the xanthophyll cycle and proton motive force to alter NPQ under low-light conditions in Arabidopsis.

Authors:  Qingen Da; Ting Sun; Menglong Wang; Honglei Jin; Mengshu Li; Dongru Feng; Jinfa Wang; Hong-Bin Wang; Bing Liu
Journal:  Plant Cell Rep       Date:  2017-10-28       Impact factor: 4.570

10.  Overexpression of thioredoxin m in chloroplasts alters carbon and nitrogen partitioning in tobacco.

Authors:  María Ancín; Luis Larraya; Igor Florez-Sarasa; Camille Bénard; Alicia Fernández-San Millán; Jon Veramendi; Yves Gibon; Alisdair R Fernie; Iker Aranjuelo; Inmaculada Farran
Journal:  J Exp Bot       Date:  2021-06-22       Impact factor: 6.992

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