Literature DB >> 23284083

PROTEIN L-ISOASPARTYL METHYLTRANSFERASE2 is differentially expressed in chickpea and enhances seed vigor and longevity by reducing abnormal isoaspartyl accumulation predominantly in seed nuclear proteins.

Pooja Verma1, Harmeet Kaur, Bhanu Prakash Petla, Venkateswara Rao, Saurabh C Saxena, Manoj Majee.   

Abstract

PROTEIN l-ISOASPARTYL METHYLTRANSFERASE (PIMT) is a widely distributed protein-repairing enzyme that catalyzes the conversion of abnormal l-isoaspartyl residues in spontaneously damaged proteins to normal aspartyl residues. This enzyme is encoded by two divergent genes (PIMT1 and PIMT2) in plants, unlike many other organisms. While the biological role of PIMT1 has been elucidated, the role and significance of the PIMT2 gene in plants is not well defined. Here, we isolated the PIMT2 gene (CaPIMT2) from chickpea (Cicer arietinum), which exhibits a significant increase in isoaspartyl residues in seed proteins coupled with reduced germination vigor under artificial aging conditions. The CaPIMT2 gene is found to be highly divergent and encodes two possible isoforms (CaPIMT2 and CaPIMT2') differing by two amino acids in the region I catalytic domain through alternative splicing. Unlike CaPIMT1, both isoforms possess a unique 56-amino acid amino terminus and exhibit similar yet distinct enzymatic properties. Expression analysis revealed that CaPIMT2 is differentially regulated by stresses and abscisic acid. Confocal visualization of stably expressed green fluorescent protein-fused PIMT proteins and cell fractionation-immunoblot analysis revealed that apart from the plasma membrane, both CaPIMT2 isoforms localize predominantly in the nucleus, while CaPIMT1 localizes in the cytosol. Remarkably, CaPIMT2 enhances seed vigor and longevity by repairing abnormal isoaspartyl residues predominantly in nuclear proteins upon seed-specific expression in Arabidopsis (Arabidopsis thaliana), while CaPIMT1 enhances seed vigor and longevity by repairing such abnormal proteins mainly in the cytosolic fraction. Together, our data suggest that CaPIMT2 has most likely evolved through gene duplication, followed by subfunctionalization to specialize in repairing the nuclear proteome.

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Year:  2013        PMID: 23284083      PMCID: PMC3585586          DOI: 10.1104/pp.112.206243

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


  38 in total

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4.  Floral dip: a simplified method for Agrobacterium-mediated transformation of Arabidopsis thaliana.

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10.  Changing transcriptional initiation sites and alternative 5'- and 3'-splice site selection of the first intron deploys Arabidopsis protein isoaspartyl methyltransferase2 variants to different subcellular compartments.

Authors:  Randy D Dinkins; Susmita Maitra Majee; Nihar R Nayak; David Martin; Qilong Xu; Marisa P Belcastro; Robert L Houtz; Carol M Beach; A Bruce Downie
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  24 in total

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Journal:  Mol Genet Genomics       Date:  2018-07-04       Impact factor: 3.291

2.  Towards a better monitoring of seed ageing under ex situ seed conservation.

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3.  Protein repair L-isoaspartyl methyltransferase 1 (PIMT1) in rice improves seed longevity by preserving embryo vigor and viability.

Authors:  Yidong Wei; Huibin Xu; Lirong Diao; Yongsheng Zhu; Hongguang Xie; Qiuhua Cai; Fangxi Wu; Zonghua Wang; Jianfu Zhang; Huaan Xie
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4.  An Arabidopsis ATP-dependent, DEAD-box RNA helicase loses activity upon IsoAsp formation but is restored by PROTEIN ISOASPARTYL METHYLTRANSFERASE.

Authors:  Nihar R Nayak; Andrea A Putnam; Balasubrahmanyam Addepalli; Jonathan D Lowenson; Tingsu Chen; Eckhard Jankowsky; Sharyn E Perry; Randy D Dinkins; Patrick A Limbach; Steven G Clarke; A Bruce Downie
Journal:  Plant Cell       Date:  2013-07-31       Impact factor: 11.277

5.  Arabidopsis protein l-ISOASPARTYL METHYLTRANSFERASE repairs isoaspartyl damage to antioxidant enzymes and increases heat and oxidative stress tolerance.

Authors:  Shraboni Ghosh; Nitin Uttam Kamble; Pooja Verma; Prafull Salvi; Bhanu Prakash Petla; Shweta Roy; Venkateswara Rao; Abhijit Hazra; Vishal Varshney; Harmeet Kaur; Manoj Majee
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6.  A role for seed storage proteins in Arabidopsis seed longevity.

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Journal:  Plant Cell       Date:  2015-09-04       Impact factor: 11.277

Review 8.  Uses of phage display in agriculture: a review of food-related protein-protein interactions discovered by biopanning over diverse baits.

Authors:  Rekha Kushwaha; Christina M Payne; A Bruce Downie
Journal:  Comput Math Methods Med       Date:  2013-04-28       Impact factor: 2.238

9.  Physiological and proteomic analyses on artificially aged Brassica napus seed.

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Journal:  Front Plant Sci       Date:  2015-02-25       Impact factor: 5.753

10.  Differentially expressed seed aging responsive heat shock protein OsHSP18.2 implicates in seed vigor, longevity and improves germination and seedling establishment under abiotic stress.

Authors:  Harmeet Kaur; Bhanu P Petla; Nitin U Kamble; Ajeet Singh; Venkateswara Rao; Prafull Salvi; Shraboni Ghosh; Manoj Majee
Journal:  Front Plant Sci       Date:  2015-09-14       Impact factor: 5.753

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