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Article

Functional and Structural Properties of Type V Collagen from the Skin of the Shortbill Spearfish (Tetrapturus angustirostris)

by
Qiuyu Han
1,
Tomoyuki Koyama
1,
Shugo Watabe
2 and
Shoichiro Ishizaki
1,*
1
Graduate School of Marine Science and Technology, Tokyo University of Marine Science and Technology, 4-5-7 Konan, Minato, Tokyo 108-8477, Japan
2
School of Marine Biosciences, Kitasato University, Minami, Sagamihara 252-0373, Kanagawa, Japan
*
Author to whom correspondence should be addressed.
Molecules 2024, 29(11), 2518; https://doi.org/10.3390/molecules29112518
Submission received: 30 April 2024 / Revised: 12 May 2024 / Accepted: 22 May 2024 / Published: 27 May 2024

Abstract

Type V collagen is considered to be a crucial minor collagen in fish skin with unique physiological functions. In this research, the cDNAs of three procollagens (Tacol5a1, Tacol5a2, and Tacol5a3) in type V collagen were cloned from the skin of shortbill spearfish (Tetrapturus angustirostris). The open reading frames (ORFs) of Tacol5a1, Tacol5a2, and Tacol5a3 contained 5991, 4485, and 5607 bps, respectively, encoding 1997, 1495, and 1869 amino acid residues. Each of the deduced amino acid sequences of procollagens contained a signal peptide and a fibrillar collagen C-terminal domain (COLFI). A conserved thrombospondin-like N-terminal domain (TSPN) was found at the N-terminus of Tacol5a1 and 5a3 procollagens, whereas a von Willebrand factor (VWC) was found at the N-terminus of Tacol5a2 procollagen. Tacol5a1, Tacol5a2, and Tacol5a3 had their theoretical isoelectric points of 5.06, 6.75, and 5.76, respectively, and predicted molecular weights of 198,435.60, 145,058.48, and 189,171.18, respectively. The phylogenetic tree analysis revealed that Tacol5a1 of shortbill spearfish clustered with that of yellow perch (Perca flavescens) instead of broadbill swordfish (Xiphias gladius). In addition, type V collagen was extracted from the shortbill spearfish skin. The in silico method demonstrated that shortbill spearfish type V collagen has a high potential for angiotensin-converting enzyme (ACE) inhibition activity (79.50%), dipeptidyl peptidase IV inhibition (74.91%) activity, and antithrombotic activity (46.83%). The structural clarification and possible functional investigation in this study provide the foundation for the applications of exogenous type V collagen derived from fish sources.
Keywords: type V collagen; cDNA cloning; shortbill spearfish; AlphaFold2; bioactivity type V collagen; cDNA cloning; shortbill spearfish; AlphaFold2; bioactivity

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MDPI and ACS Style

Han, Q.; Koyama, T.; Watabe, S.; Ishizaki, S. Functional and Structural Properties of Type V Collagen from the Skin of the Shortbill Spearfish (Tetrapturus angustirostris). Molecules 2024, 29, 2518. https://doi.org/10.3390/molecules29112518

AMA Style

Han Q, Koyama T, Watabe S, Ishizaki S. Functional and Structural Properties of Type V Collagen from the Skin of the Shortbill Spearfish (Tetrapturus angustirostris). Molecules. 2024; 29(11):2518. https://doi.org/10.3390/molecules29112518

Chicago/Turabian Style

Han, Qiuyu, Tomoyuki Koyama, Shugo Watabe, and Shoichiro Ishizaki. 2024. "Functional and Structural Properties of Type V Collagen from the Skin of the Shortbill Spearfish (Tetrapturus angustirostris)" Molecules 29, no. 11: 2518. https://doi.org/10.3390/molecules29112518

APA Style

Han, Q., Koyama, T., Watabe, S., & Ishizaki, S. (2024). Functional and Structural Properties of Type V Collagen from the Skin of the Shortbill Spearfish (Tetrapturus angustirostris). Molecules, 29(11), 2518. https://doi.org/10.3390/molecules29112518

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