狒狒干扰素- γ cDNA的分子克隆。

Lymphokine research Pub Date : 1990-01-01
R Dijkmans, M Tobback, E Beuken, J Van Damme, A Billiau
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引用次数: 0

摘要

干扰素γ (ifn - γ)是T淋巴细胞和自然杀伤细胞产生的一种细胞因子,在抵抗感染中起关键作用。狒狒(Papio anubis) ifn - γ是由金黄色葡萄球菌裂解物刺激狒狒脾细胞产生的。该干扰素对人细胞有活性,可与人ifn - γ多克隆抗血清血清中和,但不能与人干扰素- α和干扰素- β抗血清血清中和。从狒狒脾细胞中分离Poly(A)(+)-RNA,根据其沉降系数进行蔗糖密度离心分离。与人ifn - γ cDNA探针杂交表明,15s部分存在baifn - γ mRNA。构建cDNA文库,分离到一个完整的baifn - γ cDNA克隆。cDNA编码165个氨基酸的多肽,其中23个n端可作为信号肽。baifn - γ与人类ifn - γ有11个残基不同。染色体DNA的南方分析证实了狒狒和人类ifn - γ之间的一些核苷酸序列差异。狒狒ifn - γ cDNA被置于trc启动子的控制下,并在大肠杆菌细胞中表达。重组狒狒ifn - γ可被某些单克隆抗人ifn - γ抗体血清中和。所提出的工作导致重组狒狒ifn - γ用于动物实验的可用性,但也对ifn - γ的结构-功能关系产生了新的见解。
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Molecular cloning of the baboon interferon-gamma cDNA.

Interferon-gamma (IFN-gamma) is a cytokine produced by T lymphocytes and Natural Killer cells which has a key function in resistance against infections. Baboon (Papio anubis) IFN-gamma was produced by stimulation of baboon splenocytes with a lysate of Staphylococcus aureus. This interferon was active on human cells and could be seroneutralized with a polyclonal antiserum against human IFN-gamma, but not with antisera against human interferon-alpha and interferon-beta. Poly(A)(+)-RNA was isolated from baboon splenocytes and fractionated according to its sedimentation coefficient by sucrose density centrifugation. BaIFN-gamma mRNA was present in the 15 S fraction as was shown by hybridization with a human IFN-gamma cDNA probe. A cDNA library was constructed and a clone containing the complete BaIFN-gamma cDNA was isolated. The cDNA codes for a polypeptide of 165 amino acids of which the 23 N-terminal may serve as signal peptide. BaIFN-gamma differs at 11 residues from human IFN-gamma. Southern analysis of chromosomal DNA confirmed some of the nucleotide sequence differences between baboon and human IFN-gamma. The baboon IFN-gamma cDNA was placed under control of a trc promoter and brought to expression in Escherichia coli cells. Recombinant baboon IFN-gamma could be seroneutralized with certain monoclonal anti-human IFN-gamma antibodies. The presented work leads to the availability of recombinant baboon IFN-gamma for animal experiments but also yields new insight in the structure-function relationship of IFN-gamma.

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