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人睫状神经营养因子:结构-功能分析

Human ciliary neurotrophic factor: a structure-function analysis.

作者信息

Krüttgen A, Grötzinger J, Kurapkat G, Weis J, Simon R, Thier M, Schröder M, Heinrich P, Wollmer A, Comeau M

机构信息

Institute of Biochemistry, RWTH Aachen, Germany.

出版信息

Biochem J. 1995 Jul 1;309 ( Pt 1)(Pt 1):215-20. doi: 10.1042/bj3090215.

Abstract

Ciliary neurotrophic factor (CNTF) promotes survival in vitro and in vivo of several neuronal cell types including sensory and motor neurons. The primary structure of CNTF suggests it to be a cytosolic protein with strong similarity to the alpha-helical cytokine family which is characterized by a bundle of four anti-parallel helices. CNTF exerts its activity via complexation with CNTF receptor (CNTF-R). This complex consists of a CNTF-binding protein (CNTF-R) and two proteins important for signal transduction [gp130 and leukaemia inhibitory factor receptor (LIF-R)]. We have shortened the cDNA coding for CNTF at both the 5' and the 3' end and expressed the truncated proteins in bacteria. Biological activities of the protein preparations were determined by their ability to induce proliferation of BAF/3 cells that were stably transfected with CNTF-R, gp130 and LIF-R cDNAs. CNTF proteins with 14 amino acid residues removed from the N-terminus were biologically active whereas the removal of 23 amino acids resulted in an inactive protein. In addition, 18 amino acid residues could be removed from the C-terminus of the CNTF protein without apparent loss of bioactivity, but further truncation at the C-terminus yielded biologically inactive proteins. The introduction of two point mutations into the CNTF protein at a site that presumably interacts with one of the two signal-transducing proteins resulted in a CNTF mutant with no measurable bioactivity. In addition, a model of the three-dimensional structure of human CNTF was constructed using the recently established structural co-ordinates of the related cytokine, granulocyte colony-stimulating factor. CD spectra of CNTF together with our mutational analysis and our three-dimensional model fully support the view that CNTF belongs to the family of alpha-helical cytokines. It is expected that our results will facilitate the rational design of CNTF mutants with agonistic or antagonistic properties.

摘要

睫状神经营养因子(CNTF)可促进包括感觉神经元和运动神经元在内的多种神经元细胞类型在体外和体内的存活。CNTF的一级结构表明它是一种胞质蛋白,与α-螺旋细胞因子家族有很强的相似性,该家族的特征是一束四个反平行螺旋。CNTF通过与CNTF受体(CNTF-R)复合发挥其活性。该复合物由一个CNTF结合蛋白(CNTF-R)和两个对信号转导很重要的蛋白[gp130和白血病抑制因子受体(LIF-R)]组成。我们在5'和3'末端都缩短了编码CNTF的cDNA,并在细菌中表达了截短的蛋白。通过测定蛋白制剂诱导稳定转染了CNTF-R、gp130和LIF-R cDNA的BAF/3细胞增殖的能力,来确定其生物学活性。从N末端去除14个氨基酸残基的CNTF蛋白具有生物学活性,而去除23个氨基酸则导致蛋白无活性。此外,从CNTF蛋白的C末端可以去除18个氨基酸残基而不明显丧失生物活性,但在C末端进一步截短会产生无生物学活性的蛋白。在CNTF蛋白中一个可能与两个信号转导蛋白之一相互作用的位点引入两个点突变,产生了一个没有可测量生物活性的CNTF突变体。此外,利用最近建立的相关细胞因子粒细胞集落刺激因子的结构坐标,构建了人CNTF的三维结构模型。CNTF的圆二色光谱以及我们的突变分析和三维模型充分支持了CNTF属于α-螺旋细胞因子家族的观点。预计我们的结果将有助于合理设计具有激动或拮抗特性的CNTF突变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/27f7/1135822/ed16c632fbc0/biochemj00060-0210-a.jpg

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