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源自主要组织相容性复合体I类抗原的一种肽的生物活性所必需的氨基酸残基。

Amino acid residues essential for biological activity of a peptide derived from a major histocompatibility complex class I antigen.

作者信息

Stagsted J, Mapelli C, Meyers C, Matthews B W, Anfinsen C B, Goldstein A, Olsson L

机构信息

Receptron, Inc., Concord, CA 94520.

出版信息

Proc Natl Acad Sci U S A. 1993 Aug 15;90(16):7686-90. doi: 10.1073/pnas.90.16.7686.

Abstract

The stimulatory activity of peptides from the alpha 1 domain of the major histocompatibility complex (MHC) class I antigen on adipose cell glucose transport was previously shown to require a preformed, ordered conformation of the peptide. The two peptides studied previously were Dk-(61-85) (ERETQIAKGNEQSFRVDLRTLLRYY) and Dk-(69-85). We now show that systematic alanine substitution in Dk-(69-85) identifies residues that are essential for biological activity. Ordered structure of the peptides, estimated by circular dichroism, was found in all peptides with activity, but with a complex variety of spectra. Inactive peptides were in either a random coil or an ordered structure. Ordered structure, therefore, is not sufficient for activity. The peptides self-interact in the absence of cells and form aggregates that precipitate upon centrifugation. The tendency to aggregate is correlated with biological potency. Only MHC class I molecules have significant homology to the peptides studied here. The peptide self-interaction suggests that the biological effects in cells, which result from inhibition of receptor and transporter internalization, may be due to the binding (tantamount to self-interaction) of the peptide to the homologous sequences in the alpha 1 domain of the MHC class I molecule.

摘要

主要组织相容性复合体(MHC)I类抗原α1结构域来源的肽对脂肪细胞葡萄糖转运的刺激活性先前已表明需要肽具有预先形成的有序构象。先前研究的两种肽是Dk-(61 - 85)(ERETQIAKGNEQSFRVDLRTLLRYY)和Dk-(69 - 85)。我们现在表明,Dk-(69 - 85)中的系统性丙氨酸取代可鉴定出对生物活性至关重要的残基。通过圆二色性估计的肽的有序结构在所有具有活性的肽中均有发现,但光谱种类复杂。无活性的肽呈无规卷曲或有序结构。因此,有序结构并不足以产生活性。这些肽在无细胞情况下会自我相互作用并形成聚集体,离心后会沉淀。聚集倾向与生物活性相关。只有MHC I类分子与这里研究的肽有显著同源性。肽的自我相互作用表明,细胞中由受体和转运体内化抑制所导致的生物学效应可能是由于肽与MHC I类分子α1结构域中的同源序列结合(等同于自我相互作用)所致。

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