Literature DB >> 32297991

Plant small heat shock proteins - evolutionary and functional diversity.

Elizabeth R Waters1, Elizabeth Vierling2.   

Abstract

Small heat shock proteins (sHSPs) are an ubiquitous protein family found in archaea, bacteria and eukaryotes. In plants, as in other organisms, sHSPs are upregulated by stress and are proposed to act as molecular chaperones to protect other proteins from stress-induced damage. sHSPs share an 'α-crystallin domain' with a β-sandwich structure and a diverse N-terminal domain. Although sHSPs are 12-25 kDa polypeptides, most assemble into oligomers with ≥ 12 subunits. Plant sHSPs are particularly diverse and numerous; some species have as many as 40 sHSPs. In angiosperms this diversity comprises ≥ 11 sHSP classes encoding proteins targeted to the cytosol, nucleus, endoplasmic reticulum, chloroplasts, mitochondria and peroxisomes. The sHSPs underwent a lineage-specific gene expansion, diversifying early in land plant evolution, potentially in response to stress in the terrestrial environment, and expanded again in seed plants and again in angiosperms. Understanding the structure and evolution of plant sHSPs has progressed, and a model for their chaperone activity has been proposed. However, how the chaperone model applies to diverse sHSPs and what processes sHSPs protect are far from understood. As more plant genomes and transcriptomes become available, it will be possible to explore theories of the evolutionary pressures driving sHSP diversification.
© 2020 The Authors. New Phytologist © 2020 New Phytologist Trust.

Entities:  

Keywords:  HSP20; chaperones; crystallins; gene family evolution; organelles; protein quality control; sHSP; thermotolerance

Mesh:

Substances:

Year:  2020        PMID: 32297991     DOI: 10.1111/nph.16536

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  25 in total

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4.  Soybean F-Box-Like Protein GmFBL144 Interacts With Small Heat Shock Protein and Negatively Regulates Plant Drought Stress Tolerance.

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7.  iTRAQ-based quantitative proteomic analysis of heat stress-induced mechanisms in pepper seedlings.

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Authors:  Xiaohua Liu; Lizi Zhao; Jianzhao Li; Lijun Duan; Kai Zhang; Xuqiang Qiao; Weihuan Li; Chengchao Zheng; Xiaoli Tang; Hongxia Zhang
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10.  Arabidopsis thaliana Genes Associated with Cucumber mosaic virus Virulence and Their Link to Virus Seed Transmission.

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