Mast Cell And Inflammatory Bowel Disease
Copyright ©The Author(s) 2004. Published by Baishideng Publishing Group Inc. All rights reserved.
World J Gastroenterol. Feb 1, 2004; 10(3): 342-347
Published online Feb 1, 2004. doi: 10.3748/wjg.v10.i3.342
Cloning and expression of human colon mast cell carboxypeptidase
Zhang-Quan Chen, Shao-Heng He
Zhang-Quan Chen, Shao-Heng He, Allergy and Inflammation Research Institute, Medical College, Shantou University, Shantou 515031, Guangdong Province, China
Author contributions: All authors contributed equally to the work.
Supported by the Li Ka Shing Fundation, Hong Kong, China. No. C0200001
Correspondence to: Professor Shao-Heng He, Allergy and Inflammation Research Institute, Medical College, Shantou University, 22 Xin-Ling Road, Shantou 515031, Guangdong Province, China. shoahenghe@hotmail.com
Telephone: +86-754-8900405 Fax: +86-754-8900192
Received: December 3, 2003
Revised: January 4, 2004
Accepted: January 11, 2004
Published online: February 1, 2004
Abstract

AIM: To clone and express the human colon mast cell carboxypeptidase (MC-CP) gene.

METHODS: Total RNA was extracted from colon tissue, and the cDNA encoding human colon mast cell carboxypeptidase was amplified by reverse-transcription PCR (RT-PCR). The product cDNA was subcloned into the prokaryotic expression vector pMAL-c2x and eukaryotic expression vector pPIC9K to construct prokaryotic expression vector pMAL/human MC-CP (hMC-CP) and eukaryotic pPIC9K/hMC-CP. The recombinant fusion protein expressed in E.coli was induced with IPTG and purified by amylose affinity chromatography. After digestion with factor Xa, recombinant hMC-CP was purified by heparin agarose chromatography. The recombinant hMC-CP expressed in Pichia pastoris (P.pastoris) was induced with methanol and analyzed by SDS-PAGE, Western blot, N-terminal amino acid sequencing and enzyme assay.

RESULTS: The cDNA encoding the human colon mast cell carboxypeptidase was cloned, which had five nucleotide variations compared with skin MC-CP cDNA. The recombinant hMC-CP protein expressed in E.coli was purified with amylose affinity chromatography and heparin agarose chromatography. SDS-PAGE and Western blot analysis showed that the recombinant protein expressed by E. coli had a molecular weight of 36 kDa and reacted to the anti-native hMC-CP monoclonal antibody (CA5). The N-terminal amino acid sequence confirmed further the product was hMC-CP. E. coli generated hMC-CP showed a very low level of enzymatic activity, but P. pastoris produced hMC-CP had a relatively high enzymatic activity towards a synthetic substrate hippuryl-L-phenylalanine.

CONCLUSION: The cDNA encoding human colon mast cell carboxypeptidase can be successfully cloned and expressed in E.coli and P. pastoris, which will contribute greatly to the functional study on hMC-CP.

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