Structure/function studies with interferon tau: evidence for multiple active sites.

C H Pontzer, T L Ott, F W Bazer, H M Johnson
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引用次数: 36

Abstract

A novel interferon (IFN), called IFN-tau (IFN-tau), has recently been discovered and has been shown to be a pregnancy recognition hormone. Unlike known IFNs, however, IFN-tau exhibits high antiviral and antiproliferative activity without cytotoxicity. The structural basis for IFN-tau function has been examined using six overlapping synthetic peptides corresponding to the entire ovine (Ov) IFN-tau sequence. Four peptides representing amino acids 1-37, 62-92, 119-150, and 139-172 inhibited OvIFN-tau antiviral activity in a dose-dependent manner. Polyclonal antipeptide antisera directed against the same four peptides blocked OvIFN-tau binding and antiviral activity, confirming the specificity of the peptide competitions. Because IFN-tau and IFN-alpha both interact with the type I IFN receptor, peptide inhibition of bovine and human IFN alpha activity was also determined. Of importance, only three peptides, OvIFN-tau (62-92), (119-150), and (139-172) inhibited IFN-alpha antiviral activity. The amino-terminal IFN-tau peptide, OvIFN-tau(1-37), was not inhibitory. These data suggest that the internal and carboxy-terminal reactive domains of IFN-tau may interact with a common type I IFN site on the receptor, while the amino terminus interacts with a site that elicits activity unique to OvIFN-tau. Finally, the antiproliferative activity of OvIFN-tau was localized primarily to the broad carboxy-terminal region, with OvIFN-tau(119-150) being the most effective inhibitor of OvIFN-tau-induced reduction of cell proliferation. Thus, multiple domains of IFN-tau have functional significance.(ABSTRACT TRUNCATED AT 250 WORDS)

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干扰素tau的结构/功能研究:多个活性位点的证据。
最近发现了一种新的干扰素(IFN),称为IFN-tau (IFN-tau),并已被证明是一种妊娠识别激素。然而,与已知的ifn不同,IFN-tau表现出高抗病毒和抗增殖活性,而没有细胞毒性。IFN-tau功能的结构基础已经通过六个重叠的合成肽对应于整个绵羊(Ov) IFN-tau序列进行了研究。代表氨基酸1-37、62-92、119-150和139-172的四种肽以剂量依赖的方式抑制OvIFN-tau的抗病毒活性。针对相同四种肽的多克隆抗肽抗血清阻断了OvIFN-tau的结合和抗病毒活性,证实了肽竞争的特异性。由于IFN-tau和IFN- α都与I型IFN受体相互作用,因此也确定了牛和人IFN- α活性的肽抑制。重要的是,只有三种肽,OvIFN-tau(62-92),(119-150)和(139-172)抑制ifn - α的抗病毒活性。氨基端IFN-tau肽OvIFN-tau(1-37)没有抑制作用。这些数据表明,IFN-tau的内部和羧基端反应域可能与受体上常见的I型IFN位点相互作用,而氨基端则与OvIFN-tau特有的活性位点相互作用。最后,OvIFN-tau的抗增殖活性主要定位于广泛的羧基末端区域,OvIFN-tau(119-150)是OvIFN-tau诱导的细胞增殖减少的最有效抑制剂。因此,IFN-tau的多个结构域具有功能意义。(摘要删节250字)
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