首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Kinetic analysis, expression pattern, and production of a recombinant fungal protease inhibitor of tasar silkworm antheraea mylitta
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Kinetic analysis, expression pattern, and production of a recombinant fungal protease inhibitor of tasar silkworm antheraea mylitta

机译:塔萨蚕an药重组真菌蛋白酶抑制剂的动力学分析,表达模式及制备

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摘要

Antheraea mylitta, a tasar silk-producing insect of Saturniidae family, expresses a fungal protease inhibitor named as A. mylitta fungal protease inhibitor-1 (AmFPI-1). AmFPI-1 inhibits alkaline protease of Aspergillus oryzae but its mechanism of action is not known. To understand the mode of inhibition of AmFPI-1 against the fungal protease, it was purified from the hemolymph of A. mylitta larvae and inhibitory activity against A. oryzae protease was studied. Kinetic analysis of purified AmFPI-1 on alkaline protease of A. oryzae showed that AmFPI-1 acts as a canonical-type competitive inhibitor with equilibrium dissociation constant (K_i) of 60 nM. Expression of AmFPI-1 in different body tissues of fifth instar A. mylitta larvae was determined by real-time PCR, and the highest expression was observed in fat body followed by integument, silk gland, and gut, indicating that AmFPI-1 has pleiotropic functions including protection from invading fungi. The cDNA of AmFPI-1 was expressed in Escherichia coli, and recombinant His-tagged fusion protein was purified by Ni- NTA chromatography. Recombinant AmFPI-1 showed inhibitory activity against A. oryzae protease and suggested its use in various biological applications to prevent proteolysis.
机译:ther蚕(Antheraea mylitta)是S蛾科的一种生产塔萨绸的昆虫,它表达一种真菌蛋白酶抑制剂,称为A. mylitta真菌蛋白酶抑制剂-1(AmFPI-1)。 AmFPI-1抑制米曲霉的碱性蛋白酶,但其作用机理尚不清楚。为了了解AmFPI-1对真菌蛋白酶的抑制方式,从A. mylitta幼虫的血淋巴中纯化了AmFPI-1,并研究了其对米曲霉蛋白酶的抑制活性。纯化的AmFPI-1在米曲霉碱性蛋白酶上的动力学分析表明,AmFPI-1是一种典型的竞争性抑制剂,平衡解离常数(K_i)为60 nM。通过实时荧光定量PCR检测AmFPI-1在五龄夜蛾幼虫不同身体组织中的表达,在脂肪体中观察到最高的表达,其次是被膜,丝腺和肠道,表明AmFPI-1具有多效性功能包括防止真菌入侵。 AmFPI-1的cDNA在大肠杆菌中表达,重组的带His标签的融合蛋白通过Ni-NTA层析纯化。重组AmFPI-1对米曲霉蛋白酶表现出抑制活性,并建议其在多种生物学应用中用于防止蛋白水解。

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