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人类MHC II类区域中两个ABC转运蛋白基因座之间的一个蛋白酶体相关基因。

A proteasome-related gene between the two ABC transporter loci in the class II region of the human MHC.

作者信息

Glynne R, Powis S H, Beck S, Kelly A, Kerr L A, Trowsdale J

机构信息

Human Immunogenetics Laboratory, Imperial Cancer Research Fund, Lincoln's Inn Fields, London, UK.

出版信息

Nature. 1991 Sep 26;353(6342):357-60. doi: 10.1038/353357a0.

Abstract

It is now possible to paint a detailed picture of how cytoplasmic proteins are handled by the immune system. They are apparently degraded in the cytoplasm into peptides. These are then transported into the endoplasmic reticulum where they encounter class I major histocompatibility complex (MHC) molecules. Once loaded with peptide, the HLA molecules move through the Golgi apparatus to the cell membrane. Until recently, it had not been established how peptides without signal sequences cross the ER membrane. However, a number of papers have now described a pair of membrane transporter genes of the ABC (ATP-binding cassette) super-family which are attractive candidates for this function. Both transporter genes, which may encode two halves of a heterodimer, are situated in the class II region of the MHC. There is evidence that other putative components of the processing machinery, the LMPs (low molecular mass polypeptides), are also encoded in the MHC. Similarities between the properties of the LMPs and a large intracellular protease complex, called proteasome, have led to the suggestion that LMPs are involved in processing antigens. We have now identified a human gene with sequence homology to proteasome components. Remarkably, this gene maps between the two putative peptide transporter genes.

摘要

现在已经能够描绘出免疫系统如何处理细胞质蛋白的详细过程。它们显然在细胞质中被降解成肽段。然后这些肽段被转运到内质网,在那里它们会遇到I类主要组织相容性复合体(MHC)分子。一旦装载上肽段,HLA分子就会通过高尔基体移动到细胞膜。直到最近,还不清楚没有信号序列的肽段是如何穿过内质网膜的。然而,现在有一些论文描述了ABC(ATP结合盒)超家族的一对膜转运蛋白基因,它们是执行这项功能的有吸引力的候选基因。这两个转运蛋白基因可能编码异二聚体的两个部分,都位于MHC的II类区域。有证据表明,加工机制的其他假定成分,即低分子量多肽(LMPs),也在MHC中编码。LMPs的特性与一种称为蛋白酶体的大型细胞内蛋白酶复合体之间的相似性,提示LMPs参与抗原加工。我们现在已经鉴定出一个与蛋白酶体成分具有序列同源性的人类基因。值得注意的是,这个基因定位于两个假定的肽转运蛋白基因之间。

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