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首页> 外文期刊>The Journal of biological chemistry >The Bactericidal Activity of the C-type Lectin RegIIIβ against Gram-negative Bacteria involves Binding to Lipid A
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The Bactericidal Activity of the C-type Lectin RegIIIβ against Gram-negative Bacteria involves Binding to Lipid A

机译:C型凝集素Regiiiβ对革兰阴性细菌的杀菌活性涉及与脂A的结合

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摘要

RegIIIβ is a member of the C-type lectin family called RegIII. It is known to bind peptidoglycan, and its bactericidal activity shapes the interactions with commensal and pathogenic gut bacteria. However, little is known about its carbohydrate recognition specificity and the bactericidal mechanism, particularly against Gram-negative bacteria. Here, we show that RegIIIβ can bind directly to LPS by recognizing the carbohydrate moiety of lipid A via a novel motif that is indispensable for its bactericidal activity. This bactericidal activity of RegIIIβ could be inhibited by preincubation with LPS, lipid A, or gentiobiose. The latter is a disaccharide composed of two units of β-(1→6)-linked d-glucose and resembles the carbohydrate moiety of lipid A. Therefore, this structural element may form a key target site recognized by RegIIIβ. Using point-mutated RegIIIβ proteins, we found that amino acid residues in two structural motifs termed “loop 1” and “loop 2,” are important for peptidoglycan and lipid A binding (Arg-135, Asp-142) and for the bactericidal activity (Glu-134, Asn-136, Asp-142). Thus, the ERN motif and residue Asp-142 in the loop 2 are of critical importance for RegIIIβ function. This provides novel insights into the carbohydrate recognition specificity of RegIIIβ and explains its bactericidal activity against Gram-negative bacteria.
机译:Regiiiiβ是名为Regiii的C型凝集素家族的成员。已知结合肽聚糖,其杀菌活性将与共生和致病性肠道细菌的相互作用形状。然而,对其碳水化合物识别特异性和杀菌机制很少,特别是针对革兰氏阴性细菌的杀菌机制很少。在这里,我们表明Regiiiβ可以通过识别脂质A的碳水化合物部分通过一种新的基序来直接与LPS直接结合,所述基序是其杀菌活性不可或缺的。通过对LPS,脂质A或胶质二糖预孵育可以抑制Regiiiβ的这种杀菌活性。后者是由两个单位的β-(1→6) - 链接D-葡萄糖组成的二糖,并且类似于脂质A的碳水化合物部分。因此,该结构元素可以形成Regiiiβ认识的关键靶位点。使用点突变的Regiiiβ蛋白,我们发现两个结构基序中的氨基酸残基称为“环1”和“环2”对于肽聚糖和脂质是结合(ARG-135,ASP-142)和杀菌活性很重要(Glu-134,ASN-136,ASP-142)。因此,回路2中的ern主题和残留asc-142对Regiiiβ功能具有至关重要的重要性。这为Regiiiβ的碳水化合物识别特异性提供了新的洞察力,并解释了对革兰氏阴性细菌的杀菌活性。

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