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从日本黑兔(海兔)卵中分离出的一种半乳糖结合凝集素可抑制链球菌溶血素诱导的溶血。

A galactose-binding lectin isolated from Aplysia kurodai (sea hare) eggs inhibits streptolysin-induced hemolysis.

作者信息

Hasan Imtiaj, Watanabe Miharu, Ishizaki Naoto, Sugita-Konishi Yoshiko, Kawakami Yasushi, Suzuki Jun, Dogasaki Chikaku, Rajia Sultana, Kawsar Sarkar M A, Koide Yasuhiro, Kanaly Robert A, Sugawara Shigeki, Hosono Masahiro, Ogawa Yukiko, Fujii Yuki, Iriko Hideyuki, Hamako Jiharu, Matsui Taei, Ozeki Yasuhiro

机构信息

Laboratories of Glycobiology & Marine Biochemistry and Molecular Toxicology, Department of Life and Environmental System Science, Graduate School of NanoBio Sciences, Yokohama City University, 22-2 Seto, Kanazawa-ku, Yokohama 236-0027, Japan. Department of Biochemistry and Molecular Biology, Faculty of Science, University of Rajshahi, Rajshahi-6205, Bangladesh.

School of Life and Environmental Science, Azabu University, 1-17-71, Fuchinobe, Chuo-ku, Sagamihara, Kanagawa 252-5201, Japan.

出版信息

Molecules. 2014 Sep 5;19(9):13990-4003. doi: 10.3390/molecules190913990.

Abstract

A specific galactose-binding lectin was shown to inhibit the hemolytic effect of streptolysin O (SLO), an exotoxin produced by Streptococcus pyogenes. Commercially available lectins that recognize N-acetyllactosamine (ECA), T-antigen (PNA), and Tn-antigen (ABA) agglutinated rabbit erythrocytes, but had no effect on SLO-induced hemolysis. In contrast, SLO-induced hemolysis was inhibited by AKL, a lectin purified from sea hare (Aplysia kurodai) eggs that recognizes α-galactoside oligosaccharides. This inhibitory effect was blocked by the co-presence of d-galactose, which binds to AKL. A possible explanation for these findings is that cholesterol-enriched microdomains containing glycosphingolipids in the erythrocyte membrane become occupied by tightly stacked lectin molecules, blocking the interaction between cholesterol and SLO that would otherwise result in penetration of the membrane. Growth of S. pyogenes was inhibited by lectins from a marine invertebrate (AKL) and a mushroom (ABA), but was promoted by a plant lectin (ECA). Both these inhibitory and promoting effects were blocked by co-presence of galactose in the culture medium. Our findings demonstrate the importance of glycans and lectins in regulating mechanisms of toxicity, creation of pores in the target cell membrane, and bacterial growth.

摘要

一种特定的半乳糖结合凝集素被证明可抑制化脓性链球菌产生的外毒素链球菌溶血素O(SLO)的溶血作用。市售的识别N-乙酰乳糖胺(ECA)、T抗原(PNA)和Tn抗原(ABA)的凝集素可凝集兔红细胞,但对SLO诱导的溶血没有影响。相比之下,从海兔(Aplysia kurodai)卵中纯化的识别α-半乳糖苷寡糖的凝集素AKL可抑制SLO诱导的溶血。这种抑制作用可被与AKL结合的d-半乳糖的共存所阻断。对这些发现的一种可能解释是,红细胞膜中富含胆固醇的微结构域被紧密堆积的凝集素分子占据,从而阻断了胆固醇与SLO之间的相互作用,否则这种相互作用会导致膜的穿透。化脓性链球菌的生长受到来自海洋无脊椎动物(AKL)和蘑菇(ABA)的凝集素的抑制,但受到植物凝集素(ECA)的促进。培养基中半乳糖的共存会阻断这两种抑制和促进作用。我们的发现证明了聚糖和凝集素在调节毒性机制、在靶细胞膜上形成孔以及细菌生长方面的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d97d/6271371/35b540724ca0/molecules-19-13990-g001.jpg

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