Literature DB >> 31492684

Comprehensive Analysis of the Lysine Succinylome and Protein Co-modifications in Developing Rice Seeds.

Xiaoxi Meng1, Hana Mujahid1, Yadong Zhang1,2, Xiaojun Peng3, Edilberto D Redoña4, Cailin Wang5, Zhaohua Peng6.   

Abstract

Lysine succinylation has been recognized as a post-translational modification (PTM) in recent years. It is plausible that succinylation may have a vaster functional impact than acetylation because of bulkier structural changes and more significant charge differences on the modified lysine residue. Currently, however, the quantity and identity of succinylated proteins and their corresponding functions in cereal plants remain largely unknown. In this study, we estimated the native succinylation occupancy on lysine was between 2% to 10% in developing rice seeds. Eight hundred fifty-four lysine succinylation sites on 347 proteins have been identified by a thorough investigation in developing rice seeds. Six motifs were revealed as preferred amino acid sequence arrangements for succinylation sites, and a noteworthy motif preference was identified in proteins associated with different biological processes, molecular functions, pathways, and domains. Remarkably, heavy succinylation was detected on major seed storage proteins, in conjunction with critical enzymes involved in central carbon metabolism and starch biosynthetic pathways for rice seed development. Meanwhile, our results showed that the modification pattern of in vitro nonenzymatically succinylated proteins was different from those of the proteins isolated from cells in Western blots, suggesting that succinylation is not generated via nonenzymatic reaction in the cells, at least not completely. Using the acylation data obtained from the same rice tissue, we mapped many sites harboring lysine succinylation, acetylation, malonylation, crotonylation, and 2-hydroxisobutyrylation in rice seed proteins. A striking number of proteins with multiple modifications were shown to be involved in critical metabolic events. Given that these modification moieties are intermediate products of multiple cellular metabolic pathways, these targeted lysine residues may mediate the crosstalk between different metabolic pathways via modifications by different moieties. Our study exhibits a platform for extensive investigation of molecular networks administrating cereal seed development and metabolism via PTMs.
© 2019 Meng et al.

Entities:  

Keywords:  acetylation; lysine succinylation; mass spectrometry; plant biology; post-translational modifications; protein modification; rice; seeds; storage nutrient; succinylome

Mesh:

Substances:

Year:  2019        PMID: 31492684      PMCID: PMC6885699          DOI: 10.1074/mcp.RA119.001426

Source DB:  PubMed          Journal:  Mol Cell Proteomics        ISSN: 1535-9476            Impact factor:   5.911


  48 in total

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Authors:  Stephanie Spange; Tobias Wagner; Thorsten Heinzel; Oliver H Krämer
Journal:  Int J Biochem Cell Biol       Date:  2008-09-02       Impact factor: 5.085

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Authors:  Chao Peng; Zhike Lu; Zhongyu Xie; Zhongyi Cheng; Yue Chen; Minjia Tan; Hao Luo; Yi Zhang; Wendy He; Ke Yang; Bernadette M M Zwaans; Daniel Tishkoff; Linh Ho; David Lombard; Tong-Chuan He; Junbiao Dai; Eric Verdin; Yang Ye; Yingming Zhao
Journal:  Mol Cell Proteomics       Date:  2011-09-09       Impact factor: 5.911

3.  Intracellular crotonyl-CoA stimulates transcription through p300-catalyzed histone crotonylation.

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Journal:  Mol Cell       Date:  2015-03-26       Impact factor: 17.970

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Journal:  Biotechnol Adv       Date:  2012-02-10       Impact factor: 14.227

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Authors:  Jun Fan; Changliang Shan; Hee-Bum Kang; Shannon Elf; Jianxin Xie; Meghan Tucker; Ting-Lei Gu; Mike Aguiar; Scott Lonning; Huaibin Chen; Moosa Mohammadi; Laura-Mae P Britton; Benjamin A Garcia; Maša Alečković; Yibin Kang; Stefan Kaluz; Narra Devi; Erwin G Van Meir; Taro Hitosugi; Jae Ho Seo; Sagar Lonial; Manila Gaddh; Martha Arellano; Hanna J Khoury; Fadlo R Khuri; Titus J Boggon; Sumin Kang; Jing Chen
Journal:  Mol Cell       Date:  2014-01-30       Impact factor: 17.970

6.  Systematic identification of the lysine succinylation in the protozoan parasite Toxoplasma gondii.

Authors:  Xiaolong Li; Xin Hu; Yujing Wan; Guizhen Xie; Xiangzhi Li; Di Chen; Zhongyi Cheng; Xingling Yi; Shaohui Liang; Feng Tan
Journal:  J Proteome Res       Date:  2014-11-17       Impact factor: 4.466

7.  Succinylome analysis reveals the involvement of lysine succinylation in metabolism in pathogenic Mycobacterium tuberculosis.

Authors:  Mingkun Yang; Yan Wang; Ying Chen; Zhongyi Cheng; Jing Gu; Jiaoyu Deng; Lijun Bi; Chuangbin Chen; Ran Mo; Xude Wang; Feng Ge
Journal:  Mol Cell Proteomics       Date:  2015-01-20       Impact factor: 5.911

8.  Refined preparation and use of anti-diglycine remnant (K-ε-GG) antibody enables routine quantification of 10,000s of ubiquitination sites in single proteomics experiments.

Authors:  Namrata D Udeshi; Tanya Svinkina; Philipp Mertins; Eric Kuhn; D R Mani; Jana W Qiao; Steven A Carr
Journal:  Mol Cell Proteomics       Date:  2012-12-24       Impact factor: 5.911

9.  Lysine glutarylation is a protein posttranslational modification regulated by SIRT5.

Authors:  Minjia Tan; Chao Peng; Kristin A Anderson; Peter Chhoy; Zhongyu Xie; Lunzhi Dai; Jeongsoon Park; Yue Chen; He Huang; Yi Zhang; Jennifer Ro; Gregory R Wagner; Michelle F Green; Andreas S Madsen; Jessica Schmiesing; Brett S Peterson; Guofeng Xu; Olga R Ilkayeva; Michael J Muehlbauer; Thomas Braulke; Chris Mühlhausen; Donald S Backos; Christian A Olsen; Peter J McGuire; Scott D Pletcher; David B Lombard; Matthew D Hirschey; Yingming Zhao
Journal:  Cell Metab       Date:  2014-04-01       Impact factor: 27.287

10.  A proteomic study on molecular mechanism of poor grain-filling of rice (Oryza sativa L.) inferior spikelets.

Authors:  Zhixing Zhang; Hong Zhao; Jun Tang; Zhong Li; Zhou Li; Dongmei Chen; Wenxiong Lin
Journal:  PLoS One       Date:  2014-02-21       Impact factor: 3.240

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Journal:  Plants (Basel)       Date:  2022-06-22

2.  First comprehensive analysis of lysine succinylation in paper mulberry (Broussonetia papyrifera).

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3.  Dynamic Responses of Barley Root Succinyl-Proteome to Short-Term Phosphate Starvation and Recovery.

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4.  Dynamics and Functional Interplay of Nonhistone Lysine Crotonylome and Ubiquitylome in Vascular Smooth Muscle Cell Phenotypic Remodeling.

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Review 5.  The molecular basis of cereal grain proteostasis.

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Journal:  Essays Biochem       Date:  2022-08-05       Impact factor: 7.258

Review 6.  Posttranslational Modification of Waxy to Genetically Improve Starch Quality in Rice Grain.

Authors:  Tosin Victor Adegoke; Yifeng Wang; Lijuan Chen; Huimei Wang; Wanning Liu; Xingyong Liu; Yi-Chen Cheng; Xiaohong Tong; Jiezheng Ying; Jian Zhang
Journal:  Int J Mol Sci       Date:  2021-05-03       Impact factor: 5.923

7.  Systematic analysis of lysine 2-hydroxyisobutyrylation posttranslational modification in wheat leaves.

Authors:  Bo Feng; Shengdong Li; Zongshuai Wang; Fang Cao; Zheng Wang; Geng Li; Kaichang Liu
Journal:  PLoS One       Date:  2021-06-17       Impact factor: 3.240

8.  Metabolite Profiling and Classification of Developing Styrax tonkinensis Kernels.

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Journal:  Metabolites       Date:  2020-01-01
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