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杀线虫蛋白 Cry5B 的结构和糖脂结合特性。

Structure and glycolipid binding properties of the nematicidal protein Cry5B.

机构信息

Department of Chemistry and Biochemistry, 9500 Gilman Drive, University of California, San Diego, La Jolla, CA 92093-0375, USA.

出版信息

Biochemistry. 2012 Dec 11;51(49):9911-21. doi: 10.1021/bi301386q. Epub 2012 Nov 26.

Abstract

Crystal (Cry) proteins are globally used in agriculture as proteinaceous insecticides. They have also been recently recognized to have great potential as anthelmintic agents in targeting parasitic roundworms (e.g., hookworms). The most extensively characterized of the anthelmintic Cry proteins is Cry5B. We report here the 2.3 Å resolution structure of the proteolytically activated form of Cry5B. This structure, which is the first for a nematicidal Cry protein, shows the familiar three-domain arrangement seen in insecticidal Cry proteins. However, domain II is unusual in that it more closely resembles a banana lectin than it does other Cry proteins. This result is consistent with the fact that the receptor for Cry5B consists of a set of invertebrate-specific glycans (attached to lipids) and also suggests that domain II is important for receptor binding. We found that not only galactose but also N-acetylgalactosamine (GalNAc) is an efficient competitor for binding between Cry5B and glycolipids. GalNAc is one of the core arthroseries tetrasaccharides of the Cry5B receptor and galactose an antennary sugar that emanates from this core. These and prior data suggest that the minimal binding determinant for Cry5B consists of a core GalNAc and two antennary galactoses. Lastly, the protoxin form of Cry5B was found to bind nematode glycolipids with a specificity equal to that of activated Cry5B, but with lower affinity. This suggests that the initial binding of Cry5B protoxin to glycolipids can be stabilized at the nematode cell surface by proteolysis. These results lay the groundwork for the design of effective Cry5B-based anthelmintics.

摘要

晶体(Cry)蛋白在农业中被广泛用作蛋白质杀虫剂。最近,它们也被认为具有作为抗寄生虫线虫(如钩虫)驱虫剂的巨大潜力。最广泛表征的驱虫 Cry 蛋白是 Cry5B。我们在这里报告 Cry5B 的蛋白水解激活形式的 2.3 Å 分辨率结构。该结构是第一个杀线虫 Cry 蛋白结构,显示了在杀虫 Cry 蛋白中常见的三结构域排列。然而,结构域 II 是不寻常的,因为它更类似于香蕉凝集素,而不是其他 Cry 蛋白。这一结果与 Cry5B 的受体由一组无脊椎动物特异性聚糖(与脂质结合)组成的事实一致,也表明结构域 II 对受体结合很重要。我们发现不仅半乳糖,而且 N-乙酰半乳糖胺(GalNAc)也是 Cry5B 与糖脂之间结合的有效竞争物。GalNAc 是 Cry5B 受体的核心 Arthroseries 四糖之一,而半乳糖是从该核心发出的触角糖。这些和之前的数据表明,Cry5B 的最小结合决定簇由一个核心 GalNAc 和两个触角半乳糖组成。最后,发现 Cry5B 原毒素形式与激活的 Cry5B 具有相等的特异性,但亲和力较低,与线虫糖脂结合。这表明 Cry5B 原毒素与糖脂的初始结合可以通过蛋白水解在线虫细胞表面稳定化。这些结果为设计有效的基于 Cry5B 的驱虫剂奠定了基础。

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