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Lee, H.J., Tomioka, S., Kinbara, K., Masumoto, H., Jeong, S.Y., Sorimachi, H., Ishiura, S. and Suzuki, K. (1999) Characterization of a Human Digestive Tract-Specific Calpain, nCL-4, Expressed in the Baculovirus System. Archives of Biochemistry and Biophysics, 362, 22-31.
http://dx.doi.org/10.1006/abbi.1998.1021
has been cited by the following article:
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TITLE:
Phylogenetic Analysis and Taste Cell Expression of Calpain 9 in Catfish (Ictalurus punctatus)
AUTHORS:
Tetsuya Ookura, Eiki Koyama, Anne Hansen, John H. Teeter, Yukio Kawamura, Joseph G. Brand
KEYWORDS:
Gene Evolution, Taste, Novel Type
JOURNAL NAME:
Natural Science,
Vol.7 No.3,
March
13,
2015
ABSTRACT: The calpains, calcium-activated neutral proteases, play important roles in calcium-regulated intra-cellular signal transduction cascades. Here we report the isolation and initial characterization of a cDNA encoding a calpain 9, digestive tract specific calpain, from catfish taste epithelium. This calpain 9 (Ip-CAPN9a) shares 61% identity with human calpain 9. Phylogenetic analysis provides evidence that catfish calpain 9 and the related enzymes from Oncorhynchus mykiss, Danio rerio, Xenopus laevis, Mus musculus, Rattus norvegicus and Homo sapiens make up a distinct clade within the tissue-specific calpain family. Northern blot analysis reveals that Ip-CAPN9a is predominantly expressed in barbell and digestive tract, but not expressed in brain. An antibody against the N-terminal segment of Ip-CAPN9a recognizes cells within the taste buds in catfish barbells.