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◆ Veterinary world2026-08-31

Niemann-Pick type C2-mediated cholesterol sequestration induces capacitation-like sperm remodeling during reproductive tract transit in the blue swimming crab (Portunus pelagicus).

Wattana Weerachatyanukul, Thanyaporn Senarai, Thitiporn Khongkha, Orawan Thongsum, Supawich Boonkua, Jirawat Saetan, Piyaporn Surinlert, Somluk Asuvapongpatana

一句话结论 · In one sentence

This study provides the first molecular and functional characterization of NPC2 in a brachyuran crab and demonstrates that NPC2-mediated CHO sequestration is a conserved mechanism driving capacitation-like sperm activation during reproductive tract transit. These findings expand current understanding of reproductive biology in marine crustaceans and provide a molecular foundation for future studies on sperm preservation, assisted reproduction, and crustacean aquaculture.

原始摘要(英文原文)· Original abstract
BACKGROUND AND AIM: Cholesterol (CHO) sequestration from the sperm plasma membrane is a fundamental event during mammalian sperm capacitation, but the molecular mechanisms underlying capacitation-like sperm activation in brachyuran crabs remain unknown. Although Niemann-Pick type C2 (NPC2), a high-affinity CHO-binding protein, has been implicated in sperm maturation in penaeid shrimp, its occurrence and physiological role in brachyuran species have not been investigated. This study characterized the Portunus pelagicus NPC2 (PpNPC2) gene, determined its localization in the male reproductive tract, and evaluated its role in capacitation-like sperm remodeling during reproductive tract transit in CHO-dependent capacitation. MATERIALS AND METHODS: The PpNPC2 sequence was identified and analyzed using comparative molecular and phylogenetic approaches. Localization of PpNPC2 in the testis and spermatic duct was examined by immunohistochemistry. Recombinant PpNPC2 protein was produced in Escherichia coli and functionally evaluated using isolated testicular sperm. Membrane CHO content was quantified by high-performance thin-layer chromatography and Filipin III fluorescence staining, whereas sperm morphology and protein tyrosine phosphorylation were assessed using light microscopy, immunofluorescence, and Western blotting. RESULTS: PpNPC2 encoded a conserved NPC2 protein that clustered phylogenetically with crustacean NPC2 homologs and was predominantly localized in epithelial cells of the testis and spermatic duct. During sperm transit, membrane CHO decreased by approximately 32%, accompanied by progressive transformation of round testicular sperm into characteristic snowman-like spermatic duct sperm. Recombinant PpNPC2 reproduced these physiological changes by promoting CHO sequestration, inducing time- and concentration-dependent morphological remodeling, and significantly increasing protein tyrosine phosphorylation by up to 2.33-fold (p < 0.01). These findings indicate that PpNPC2 functions as a CHO-sequestering protein that initiates capacitation-like biochemical and structural remodeling during sperm maturation. CONCLUSION: This study provides the first molecular and functional characterization of NPC2 in a brachyuran crab and demonstrates that NPC2-mediated CHO sequestration is a conserved mechanism driving capacitation-like sperm activation during reproductive tract transit. These findings expand current understanding of reproductive biology in marine crustaceans and provide a molecular foundation for future studies on sperm preservation, assisted reproduction, and crustacean aquaculture.
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Niemann-Pick type C2-mediated cholesterol sequestration induces capacitation-like sperm remodeling during reproductive tract transit in the blue swimming crab (Portunus pelagicus). — 科研速览 Science Skim