Literature DB >> 18795239

Autoacetylation of purified calreticulin transacetylase utilizing acetoxycoumarin as the acetyl group donor.

Seema Bansal1, Prija Ponnan, Hanumantharao G Raj, Susan T Weintraub, Madhu Chopra, Ranju Kumari, Daman Saluja, Ajit Kumar, Tapesh K Tyagi, Prabhjot Singh, Ashok K Prasad, Luciano Saso, Ramesh C Rastogi, Virinder S Parmar.   

Abstract

Our earlier reports documented that calreticulin, a multifunctional Ca2+-binding protein in endoplasmic reticulum lumen, possessed protein acetyltransferase function termed Calreticulin Transacetylase (CRTAase). The autoacetylation of purified human placental CRTAase concomitant with the acetylation of receptor proteins by a model acetoxycoumarin, 7,8-Diacetoxy-4-methylcoumarin, was observed. Here, we have examined the autoacetylation property of CRTAase by immunoblotting and mass spectrometry. Ca2+ was found to inhibit CRTAase activity. The inhibition of both autoacetylation of CRTAase as well as acetylation of the receptor protein was apparent when Ca2+) was included in the reaction mixture as visualized by interaction with anti-acetyl lysine antibody. The acetylation of lysines residues: -48, -62, -64, -153, and -159 in N-domain and -206, -207, -209, and -238 in P-domain of CRTAase were located by high-performance liquid chromatography-electronspray ionization tandem mass spectrometry. Further, computer assisted protein structure modeling studies were undertaken to probe the effect of autoacetylation of CRTAase. Accordingly, the predicted CRTAase 3D model showed that all the loop regions of both N- and P-domain bear the acetylated lysines. Energy minimization of the acetylated residues revealed charge neutralization of lysines due to the N-epsilon-acetylation which may facilitate the interaction of CRTAase with the protein substrate and the subsequent transacetylase action.

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Year:  2008        PMID: 18795239     DOI: 10.1007/s12010-008-8357-2

Source DB:  PubMed          Journal:  Appl Biochem Biotechnol        ISSN: 0273-2289            Impact factor:   2.926


  4 in total

1.  Site-directed mutagenesis in the P-domain of calreticulin transacylase identifies Lys-207 as the active site residue.

Authors:  Rini Joshi; Prabhjot Singh; Naresh K Sharma; Prija Ponnan; Daman Saluja; Jasvinder K Gambhir; Diwan S Rawat; Virinder S Parmar; Bilkere S Dwarakanath; Ashok K Prasad; Hanumantharao G Raj
Journal:  3 Biotech       Date:  2021-02-03       Impact factor: 2.406

Review 2.  Comparison of protein acetyltransferase action of CRTAase with the prototypes of HAT.

Authors:  Prija Ponnan; Ajit Kumar; Prabhjot Singh; Prachi Gupta; Rini Joshi; Marco Gaspari; Luciano Saso; Ashok K Prasad; Ramesh C Rastogi; Virinder S Parmar; Hanumantharao G Raj
Journal:  ScientificWorldJournal       Date:  2014-02-04

3.  A novel functional site in the PB2 subunit of influenza A virus essential for acetyl-CoA interaction, RNA polymerase activity, and viral replication.

Authors:  Dai Hatakeyama; Masaki Shoji; Seiya Yamayoshi; Takenori Hirota; Monami Nagae; Shin Yanagisawa; Masahiro Nakano; Naho Ohmi; Takeshi Noda; Yoshihiro Kawaoka; Takashi Kuzuhara
Journal:  J Biol Chem       Date:  2014-07-25       Impact factor: 5.157

4.  Molecular and Biochemical Characterization of Opisthorchis viverrini Calreticulin.

Authors:  Wanlapa Chaibangyang; Amornrat Geadkaew-Krenc; Suksiri Vichasri-Grams; Smarn Tesana; Rudi Grams
Journal:  Korean J Parasitol       Date:  2017-12-31       Impact factor: 1.341

  4 in total

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