State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, 135 Xingang Road West, Guangzhou, 510275, China.
State Key Laboratory of Biocontrol, School of Life Sciences, Sun Yat-sen University, 135 Xingang Road West, Guangzhou, 510275, China.
Insect Biochem Mol Biol. 2020 Mar;118:103314. doi: 10.1016/j.ibmb.2020.103314. Epub 2020 Jan 9.
C-type lectins participate in hemocytic encapsulation as pattern recognition receptors; however, the molecular mechanisms underlying their function remain unknown. In this study, we determined that the encapsulation-promoting function of a C-type lectin, IML-10, may be related to its interaction with hemocytes in the agricultural pest Ostrinia furnacalis. IML-10 possesses two carbohydrate-recognition domains (CRDs) containing EPN and QPD motifs with 4 and 6 conserved cysteine residues, respectively. IML-10 was found to mainly be secreted by the fat body into the larval plasma, and its expression was induced by Sephadex A-25 beads. Anti-IML-10 antibodies inhibited encapsulation-promoting function of IML-10 in the larval plasma. The encapsulation rate of Sephadex A-25 beads decreased from approximately 90%-30% when expression of IML-10 in O. furnacalis larvae was inhibited by RNAi. Moreover, the Sephadex bead-encapsulating ability of hemocytes decreased to almost zero in O. furnacalis larvae with IML-10 knocked out by CRISPR/Cas9, with IML-10 expression clearly decreasing compared to that of the control. Similar to the larval plasma, recombinant IML-10 promoted Sephadex bead encapsulation by hemocytes. Immunohistochemistry analysis showed that IML-10 was able to bind to the surface of both granulocytes and plasmatocytes but not to Sephadex beads as foreign objects. Furthermore, recombinant IML-10 promoted hemocyte aggregation but not adhesion. Therefore, we speculate that IML-10 binds to the surface of hemocytes to promote their aggregation and further improve their encapsulation capacity. These results contribute to clarifying the function of insect C-type lectins in encapsulation.
C 型凝集素作为模式识别受体参与血细胞包被;然而,其功能的分子机制尚不清楚。在这项研究中,我们确定了一种 C 型凝集素 IML-10 的促包被功能可能与其在农业害虫烟夜蛾中的血细胞相互作用有关。IML-10 具有两个糖识别结构域(CRD),分别包含 EPN 和 QPD 基序,各含有 4 和 6 个保守半胱氨酸残基。发现 IML-10 主要由脂肪体分泌到幼虫血浆中,并被 Sephadex A-25 珠诱导表达。抗 IML-10 抗体抑制了 IML-10 在幼虫血浆中的促包被功能。当 IML-10 在烟夜蛾幼虫中的表达被 RNAi 抑制时,Sephadex A-25 珠的包被率从约 90%下降到 30%。此外,在 IML-10 通过 CRISPR/Cas9 敲除的烟夜蛾幼虫中,血细胞对 Sephadex 珠的包被能力几乎降为零,与对照相比,IML-10 的表达明显降低。与幼虫血浆相似,重组 IML-10 促进了血细胞对 Sephadex 珠的包被。免疫组织化学分析表明,IML-10 能够与粒细胞和浆细胞的表面结合,但不能与作为异物的 Sephadex 珠结合。此外,重组 IML-10 促进了血细胞的聚集而不是黏附。因此,我们推测 IML-10 与血细胞的表面结合,促进其聚集,进一步提高其包被能力。这些结果有助于阐明昆虫 C 型凝集素在包被中的功能。