Literature DB >> 31302867

The C-terminal cysteine-rich motif of NYE1/SGR1 is indispensable for its function in chlorophyll degradation in Arabidopsis.

Zuokun Xie1,2, Shengdong Wu1,2, Junyi Chen1,2, Xiaoyu Zhu1,2, Xin Zhou1,2, Stefan Hörtensteiner3, Guodong Ren4,5, Benke Kuai6,7.   

Abstract

KEY MESSAGE: The C-terminal cysteine-rich motif of NYE1/SGR1 affects chlorophyll degradation likely by mediating its self-interaction and conformational change, and somehow altering its Mg-dechelating activity in response to the changing redox potential. During green organ senescence in plants, the most prominent phenomenon is the degreening caused by net chlorophyll (Chl) loss. NON-YELLOWING1/STAY-GREEN1 (NYE1/SGR1) was recently reported to be able to dechelates magnesium (Mg) from Chl a to initiate its degradation, but little is known about the domain/motif basis of its functionality. In this study, we carried out a protein truncation assay and identified a conserved cysteine-rich motif (CRM, P-X3-C-X3-C-X-C2-F-P-X5-P) at its C terminus, which is essential for its function. Genetic analysis showed that all four cysteines in the CRM were irreplaceable, and enzymatic assays demonstrated that the mutation of each of the four cysteines affected its Mg-dechelating activity. The CRM plays a critical role in the conformational change and self-interaction of NYE1 via the formation of inter- and intra-molecular disulfide bonds. Our results may provide insight into how NYE1 responds to rapid redox changes during leaf senescence and in response to various environmental stresses.

Entities:  

Keywords:  Arabidopsis; Chlorophyll degradation; Cysteine-rich motif; NYE1/SGR1; Redox regulation

Mesh:

Substances:

Year:  2019        PMID: 31302867     DOI: 10.1007/s11103-019-00902-1

Source DB:  PubMed          Journal:  Plant Mol Biol        ISSN: 0167-4412            Impact factor:   4.076


  59 in total

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4.  Chlorophyll biosynthesis. Expression of a second chl I gene of magnesium chelatase in Arabidopsis supports only limited chlorophyll synthesis.

Authors:  Heather M Rissler; Eva Collakova; Dean DellaPenna; James Whelan; Barry J Pogson
Journal:  Plant Physiol       Date:  2002-02       Impact factor: 8.340

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Journal:  EMBO Rep       Date:  2005-03       Impact factor: 8.807

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Journal:  Plant J       Date:  1998-12       Impact factor: 6.417

7.  Inducers of plant systemic acquired resistance regulate NPR1 function through redox changes.

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Journal:  Proc Natl Acad Sci U S A       Date:  2003-12-01       Impact factor: 11.205

Review 9.  Metal and redox modulation of cysteine protein function.

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