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γ干扰素和磷酸化对蛋白酶体复合物的调控

Regulation of proteasome complexes by gamma-interferon and phosphorylation.

作者信息

Rivett A J, Bose S, Brooks P, Broadfoot K I

机构信息

Department of Biochemistry, University of Bristol, School of Medical Sciences, BS8 1TD, Bristol, UK.

出版信息

Biochimie. 2001 Mar-Apr;83(3-4):363-6. doi: 10.1016/s0300-9084(01)01249-4.

Abstract

Proteasomes play a major role in non-lysosomal proteolysis and also in the processing of proteins for presentation by the MHC class I pathway. In animal cells they exist in several distinct molecular forms which contribute to the different functions. 26S proteasomes contain the core 20S proteasome together with two 19S regulatory complexes. Alternatively, PA28 complexes can bind to the ends of the 20S proteasome to form PA28-proteasome complexes and PA28-proteasome-19S hybrid complexes have also been described. Immunoproteasome subunits occur in 26S proteasomes as well as in PA28-proteasome complexes. We have found differences in the subcellular distribution of the different forms of proteasomes. The gamma-interferon inducible PA28 alpha and beta subunits are predominantly located in the cytoplasm, while 19S regulatory complexes (present at significant levels only in 26S complexes) are present in the nucleus as well as in the cytoplasm. Immunoproteasomes are greatly enriched at the endoplasmic reticulum (ER) where they may facilitate the generation of peptides for transport into the lumen of the ER. We have also investigated the effects of gamma-interferon on the levels and subcellular distribution of inducible subunits and regulator subunits. In each case gamma-interferon was found to increase the level but not to alter the distribution. Several subunits of proteasomes are phosphorylated including alpha subunits C8 (alpha7) and C9 (alpha3), and ATPase subunit S4 (rpt2). Our studies have shown that gamma-interferon treatment decreases the level of phosphorylation of proteasomes. We have investigated the role of phosphorylation of C8 by casein kinase II by site directed mutagenesis. The results demonstrate that phosphorylation at either one of the two sites is essential for the association of 19S regulatory complexes and that the ability to undergo phosphorylation at both sites gives the most efficient incorporation of C8 into the 26S proteasome.

摘要

蛋白酶体在非溶酶体蛋白水解以及通过MHC I类途径呈递蛋白的加工过程中发挥主要作用。在动物细胞中,它们以几种不同的分子形式存在,这些形式具有不同的功能。26S蛋白酶体包含核心20S蛋白酶体以及两个19S调节复合物。另外,PA28复合物可以结合到20S蛋白酶体的末端形成PA28 - 蛋白酶体复合物,并且也已描述了PA28 - 蛋白酶体 - 19S杂合复合物。免疫蛋白酶体亚基存在于26S蛋白酶体以及PA28 - 蛋白酶体复合物中。我们发现不同形式的蛋白酶体在亚细胞分布上存在差异。γ - 干扰素诱导的PA28α和β亚基主要位于细胞质中,而19S调节复合物(仅在26S复合物中大量存在)存在于细胞核和细胞质中。免疫蛋白酶体在内质网(ER)中大量富集,在那里它们可能有助于生成肽以便转运到ER腔中。我们还研究了γ - 干扰素对诱导亚基和调节亚基水平及亚细胞分布的影响。在每种情况下,发现γ - 干扰素会增加水平,但不会改变分布。蛋白酶体的几个亚基会被磷酸化,包括α亚基C8(α7)和C9(α3)以及ATP酶亚基S4(rpt2)。我们的研究表明,γ - 干扰素处理会降低蛋白酶体的磷酸化水平。我们通过定点诱变研究了酪蛋白激酶II对C8磷酸化的作用。结果表明,两个位点中任一位点的磷酸化对于19S调节复合物的结合至关重要,并且两个位点都能发生磷酸化的能力使C8最有效地掺入26S蛋白酶体中。

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