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一种昆虫细胞因子的溶液结构和表达谱:烟草天蛾应激反应肽-2

Solution Structure and Expression Profile of an Insect Cytokine: Manduca sexta Stress Response Peptide-2.

作者信息

Schrag Lynn G, Cao Xiaolong, Herrera Alvaro I, Wang Yang, Jiang Haobo, Prakash Om

机构信息

Department of Entomology and Plant Pathology, Oklahoma State University Stillwater, OK 74078, USA.

Department of Biochemistry and Molecular Biophysics, Kansas State Universities, Manhattan, KS 66506, USA.

出版信息

Protein Pept Lett. 2017;24(1):3-11. doi: 10.2174/0929866524666161121142840.

Abstract

Manduca sexta stress response peptide-2 (SRP2) is predicted to be a 25-residue peptide (FGVKDGKCPSGRVRRLGICVPDDDY), which may function as an insect cytokine to regulate immune responses. Produced as an inactive precursor, endogenous proSRP2 is probably converted to active SRP2 by limited proteolysis in response to invading pathogens, along with prophenoloxidase and pro-Spätzle activation. In addition to immunity, SRP2 may control head morphogenesis or other developmental processes in the lepidopteran insect. We have examined the profiles of SRP2 gene expression in terms of immune induction capacity, tissue specificity, and developmental changes. To gain insights into its functions, we chemically synthesized SRP2, injected the peptide solution into naïve larvae, and detected significant up-regulation of several antimicrobial peptide genes. We determined the 3D molecular structure in solution of SRP2 by two-dimensional 1H-1H NMR spectroscopy. SRP2 has an ordered structure, which is composed of two short β-strands at regions R12 - R15 and I18 - V20, one type-I' β-turn at region R15 - I18, and a half turn at region C8 - S10 in its welldefined core stabilized by a covalent disulfide bond between C8 and C19. The secondary and tertiary structures are further stabilized by hydrogen bonds. Possible relationships between the structure and function are also discussed.

摘要

烟草天蛾应激反应肽-2(SRP2)预计是一种由25个氨基酸组成的肽(FGVKDGKCPSGRVRRLGICVPDDDY),它可能作为一种昆虫细胞因子来调节免疫反应。内源性前体SRP2以无活性的前体形式产生,可能在入侵病原体的刺激下通过有限的蛋白水解作用,与前酚氧化酶和前斯帕茨勒的激活一起转化为活性SRP2。除了免疫作用外,SRP2可能还控制鳞翅目昆虫头部的形态发生或其他发育过程。我们从免疫诱导能力、组织特异性和发育变化方面研究了SRP2基因的表达情况。为深入了解其功能,我们化学合成了SRP2,将肽溶液注射到未接触过病原体的幼虫体内,检测到几种抗菌肽基因显著上调。我们通过二维1H-1H NMR光谱法测定了SRP2在溶液中的三维分子结构。SRP2具有有序结构,在其明确的核心区域,由R12 - R15和I18 - V20区域的两条短β链、R15 - I18区域的一个I型'β转角以及C8 - S10区域的半个转角组成,通过C8和C19之间的共价二硫键稳定。二级和三级结构通过氢键进一步稳定。还讨论了结构与功能之间可能的关系。

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Characteristics common to a cytokine family spanning five orders of insects.跨越五个昆虫目具有共性的细胞因子家族的特征。
Insect Biochem Mol Biol. 2012 Jun;42(6):446-54. doi: 10.1016/j.ibmb.2012.03.001. Epub 2012 Mar 20.

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