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Updated: Jun 26, 2026

High Throughput Quantitative Expression Screening and Purification Applied to Recombinant Disulfide-rich Venom Proteins Produced in E. coli
Published on: July 30, 2014
Structural divergence of cysteine-rich secretory proteins in snake venoms
Yukiko Matsunaga1, Yasuo Yamazaki, Fumiko Hyodo
1Department of Biochemistry, Meiji Pharmaceutical University, 2-522-1 Noshio, Kiyose, Tokyo, Japan.
Abstract:
Cysteine-rich secretory proteins (CRISPs) are expressed in spermatocytes and granules of neutrophils in mammals, and are associated with sperm maturation and host defense. Related proteins have recently been recovered in snake venoms, and some of the snake venom-derived CRISPs exhibit ion channel blocking activity. Here we isolated and identified two novel CRISPs (kaouthin-1 and kaouthin-2) from the venom of Naja kaouthia (Elapidae), and cloned the encoding cDNAs. Kaouthin-1 and kaouthin-2 were classified into two broad sister groups of Elapidae, the Asian species and the marine/Australian species, respectively. Sequence comparisons reveal that the high-frequency variable regions among snake venom CRISPs define a continuous line on the molecular surface of the N-terminal pathogenesis-related protein-1 (PR-1) domain and the C-terminal cysteine-rich domain (CRD). Snake venom proteins generally display efficient molecular diversity around functionally key regions, suggesting that the PR-1 domain of CRISPs is important for the recognition of target molecules.
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