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五种家蚕30K蛋白参与抗真菌的细胞免疫。

Five Silkworm 30K Proteins Are Involved in the Cellular Immunity against Fungi.

作者信息

Ye Lin, Zhang Yan, Dong Zhaoming, Guo Pengchao, Zhao Dongchao, Li Haoyun, Hu Hang, Zhou Xiaofang, Chen Haiqin, Zhao Ping

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China.

Biological Science Research Center, Southwest University, Chongqing 400716, China.

出版信息

Insects. 2021 Jan 27;12(2):107. doi: 10.3390/insects12020107.

Abstract

BACKGROUND

30K proteins are a major group of nutrient storage proteins in the silkworm hemolymph. Previous studies have shown that 30K proteins are involved in the anti-fungal immunity; however, the molecular mechanism involved in this immunity remains unclear.

METHODS

We investigated the transcriptional expression of five 30K proteins, including BmLP1, BmLP2, BmLP3, BmLP4, and BmLP7. The five recombinant 30K proteins were expressed in an expression system, and used for binding assays with fungal cells and hemocytes.

RESULTS

The transcriptional expression showed that the five 30K proteins were significantly upregulated after injection of pathogen-associated molecular patterns to the fifth instar larvae, indicating the possibility of their involvement in immune response. The binding assay showed that only BmLP1 and BmLP4 can bind to both fungal cells and silkworm hemocytes. Furthermore, we found that BmLP1-coated and BmLP4-coated agarose beads promote encapsulation of hemocytes in vitro. The hemocyte encapsulation was blocked when the BmLP1-coated beads were preincubated with BmLP1 specific polyclonal antibodies.

CONCLUSIONS

These results demonstrate that 30K proteins are involved in the cellular immunity of silkworms by acting as pattern recognition molecules to directly recruit hemocytes to the fungal surface.

摘要

背景

30K蛋白是家蚕血淋巴中主要的营养储存蛋白组。先前的研究表明,30K蛋白参与抗真菌免疫;然而,这种免疫所涉及的分子机制仍不清楚。

方法

我们研究了五种30K蛋白的转录表达,包括BmLP1、BmLP2、BmLP3、BmLP4和BmLP7。这五种重组30K蛋白在一个表达系统中表达,并用于与真菌细胞和血细胞的结合试验。

结果

转录表达显示,在将病原体相关分子模式注射到五龄幼虫后,这五种30K蛋白显著上调,表明它们参与免疫反应的可能性。结合试验表明,只有BmLP1和BmLP4能与真菌细胞和家蚕血细胞结合。此外,我们发现用BmLP1包被和BmLP4包被的琼脂糖珠在体外促进血细胞的包囊化。当用BmLP1特异性多克隆抗体预孵育BmLP1包被的珠子时,血细胞包囊化被阻断。

结论

这些结果表明,30K蛋白通过作为模式识别分子直接将血细胞募集到真菌表面而参与家蚕的细胞免疫。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/692b/7911669/49d535f1c7b8/insects-12-00107-g001.jpg

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