Wei-Wei Kong , Yu-Liang Yan , Cai-Ping Hou , Tao Hong , Yi-Sheng Wang , Xin Xu , Shi-Huo Liu , Jia-Ping Xu
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Based on the results of label-free quantitative protein proteomics of the midgut digestive juice of different resistant strains in our laboratory, we successfully screened a differentially expressed candidate protein (DEP), <em>B. mori</em> chymotrypsin-like serine protease (BmCLSP), and comprehensively analyzed the biological characteristics and anti-BmNPV function of BmCLSP. The open reading frame (ORF) of <em>BmCLSP</em> is 891 bp, encoding 296 amino acid residues. The analysis of the domain structure showed that there was a signal peptide and a trypsin-like serine protease domain, Tryp_SPC, in the BmCLSP protein. Semi-quantitative and real-time fluorescence quantitative PCR analysis showed that the <em>BmCLSP</em> gene was highly expressed in the fifth instar larvae of silkworm, and specifically expressed in the midgut. The expression level of <em>BmCLSP</em> in the BmNPV resistant strain A35 was higher than that in the sensitive strain P50. Virus amplification analysis showed that the relative expression level of <em>VP39</em> was significantly lower than that of the control group after infection of silkworm larvae and BmN cells with BmNPV treated with recombinant BmCLSP at an appropriate concentration. Furthermore, our overexpression of BmCLSP in BmN cells significantly inhibited the expansion of BmNPV. In summary, the results of this study indicate that BmCLSP has anti-BmNPV activity in silkworm, and can significantly inhibit the proliferation of BmNPV in silkworm. 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Blood-borne pyosis caused by <em>Bombyx mori</em> nuclear polyhedrosis virus (BmNPV) has caused serious harm to sericulture. At present, the scientific problems of BmNPV infection and silkworm resistance to BmNPV infection have been the focus of many scientists, but the molecular mechanism needs further research and exploration. Based on the results of label-free quantitative protein proteomics of the midgut digestive juice of different resistant strains in our laboratory, we successfully screened a differentially expressed candidate protein (DEP), <em>B. mori</em> chymotrypsin-like serine protease (BmCLSP), and comprehensively analyzed the biological characteristics and anti-BmNPV function of BmCLSP. The open reading frame (ORF) of <em>BmCLSP</em> is 891 bp, encoding 296 amino acid residues. The analysis of the domain structure showed that there was a signal peptide and a trypsin-like serine protease domain, Tryp_SPC, in the BmCLSP protein. Semi-quantitative and real-time fluorescence quantitative PCR analysis showed that the <em>BmCLSP</em> gene was highly expressed in the fifth instar larvae of silkworm, and specifically expressed in the midgut. The expression level of <em>BmCLSP</em> in the BmNPV resistant strain A35 was higher than that in the sensitive strain P50. Virus amplification analysis showed that the relative expression level of <em>VP39</em> was significantly lower than that of the control group after infection of silkworm larvae and BmN cells with BmNPV treated with recombinant BmCLSP at an appropriate concentration. Furthermore, our overexpression of BmCLSP in BmN cells significantly inhibited the expansion of BmNPV. In summary, the results of this study indicate that BmCLSP has anti-BmNPV activity in silkworm, and can significantly inhibit the proliferation of BmNPV in silkworm. 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引用次数: 0
摘要
丝氨酸蛋白酶(SPs)是鳞翅目昆虫消化系统中的重要蛋白酶。它们在蛋白质消化、凝血、信号转导、激素激活、炎症和发育中发挥重要作用。家蚕核型多角体病毒(Bombyx mori nuclear polyhedrosis virus, BmNPV)引起的血源性化脓病对养蚕业造成了严重危害。目前,关于BmNPV感染和家蚕对BmNPV感染的抗性的科学问题一直是众多科学家关注的焦点,但其分子机制还需要进一步的研究和探索。基于本实验室对不同耐药菌株中肠消化液进行无标记定量蛋白质组学分析,成功筛选了一种差异表达候选蛋白(DEP)——家蚕凝乳胰蛋白酶样丝氨酸蛋白酶(BmCLSP),并综合分析了BmCLSP的生物学特性和抗bmnpv功能。BmCLSP的开放阅读框(ORF)长度为891 bp,编码296个氨基酸残基。结构域结构分析表明,BmCLSP蛋白中存在一个信号肽和一个胰蛋白酶样丝氨酸蛋白酶结构域Tryp_SPC。半定量和实时荧光定量PCR分析表明,BmCLSP基因在家蚕5龄幼虫中高表达,并在中肠特异性表达。BmCLSP在BmNPV抗性菌株A35中的表达量高于敏感菌株P50。病毒扩增分析表明,用适当浓度的重组BmCLSP处理过的BmNPV感染家蚕幼虫和BmN细胞后,VP39的相对表达量显著低于对照组。此外,我们在BmN细胞中过表达BmCLSP可显著抑制BmNPV的扩增。综上所述,本研究结果表明,BmCLSP在家蚕体内具有抗BmNPV活性,并能显著抑制BmNPV在家蚕体内的增殖。这为蚕种抗病毒育种提供了一条很有前途的途径。
A novel digestive protease chymotrypsin-like serine contributes to anti-BmNPV activity in silkworm (Bombyx mori)
Serine proteases (SPs) are important proteases in the digestive system of lepidopteran insects. They play important roles in protein digestion, coagulation, signal transduction, hormone activation, inflammation and development. Blood-borne pyosis caused by Bombyx mori nuclear polyhedrosis virus (BmNPV) has caused serious harm to sericulture. At present, the scientific problems of BmNPV infection and silkworm resistance to BmNPV infection have been the focus of many scientists, but the molecular mechanism needs further research and exploration. Based on the results of label-free quantitative protein proteomics of the midgut digestive juice of different resistant strains in our laboratory, we successfully screened a differentially expressed candidate protein (DEP), B. mori chymotrypsin-like serine protease (BmCLSP), and comprehensively analyzed the biological characteristics and anti-BmNPV function of BmCLSP. The open reading frame (ORF) of BmCLSP is 891 bp, encoding 296 amino acid residues. The analysis of the domain structure showed that there was a signal peptide and a trypsin-like serine protease domain, Tryp_SPC, in the BmCLSP protein. Semi-quantitative and real-time fluorescence quantitative PCR analysis showed that the BmCLSP gene was highly expressed in the fifth instar larvae of silkworm, and specifically expressed in the midgut. The expression level of BmCLSP in the BmNPV resistant strain A35 was higher than that in the sensitive strain P50. Virus amplification analysis showed that the relative expression level of VP39 was significantly lower than that of the control group after infection of silkworm larvae and BmN cells with BmNPV treated with recombinant BmCLSP at an appropriate concentration. Furthermore, our overexpression of BmCLSP in BmN cells significantly inhibited the expansion of BmNPV. In summary, the results of this study indicate that BmCLSP has anti-BmNPV activity in silkworm, and can significantly inhibit the proliferation of BmNPV in silkworm. It offers a promising avenue for silkworm anti-virus breeding.
期刊介绍:
Developmental and Comparative Immunology (DCI) is an international journal that publishes articles describing original research in all areas of immunology, including comparative aspects of immunity and the evolution and development of the immune system. Manuscripts describing studies of immune systems in both vertebrates and invertebrates are welcome. All levels of immunological investigations are appropriate: organismal, cellular, biochemical and molecular genetics, extending to such fields as aging of the immune system, interaction between the immune and neuroendocrine system and intestinal immunity.