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首页> 外文期刊>Journal of Molecular Biology >MATURATION OF MAMMALIAN 20 S PROTEASOME - PURIFICATION AND CHARACTERIZATION OF 13S AND 16S PROTEASOME PRECURSOR COMPLEXES
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MATURATION OF MAMMALIAN 20 S PROTEASOME - PURIFICATION AND CHARACTERIZATION OF 13S AND 16S PROTEASOME PRECURSOR COMPLEXES

机译:哺乳动物20 S蛋白质的成熟-13S和16S蛋白质前体复合物的纯化和表征。

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The maturation of the eukaryotic 20 S proteasome complex occurs via 13 S and 16 S precursor complexes in a multistep assembly pathway. These precursor complexes contain alpha-subunits as well as unprocessed beta-subunit proproteins. We have purified and characterized the different proteasome assembly intermediates and analysed their ability to support beta-subunit proprotein processing in vitro. Our data show that 13 S and 16 S proteasome precursor complexes differ not only in size but also in their protein content and behaviour during hydrophobic chromatography. By establishing conditions which allowed us to analyse beta-prosubunit maturation in vitro we demonstrate that the processing of the homologous proproteins of the beta-subunits LMP2 and delta essentially takes place in 16 S precursor complexes. No proprotein processing activity was observed in 13 S precursor complexes. Furthermore, proprotein processing in vitro can be inhibited with a proteasome specific inhibitor, but with different efficiency for LMP2 and delta. A peptide, which represents the sequence of the proprotein processing site HGTT, exhibited no inhibitory effect on the processing of either subunit. These data provide further evidence that proprotein processing occurs via an autocatalytic mechanism. Our experiments also demonstrate that the chaperone protein hsc73 is associated with 16 S but not with 13 S precursor complexes. Ln support of the specificity of this interaction incubation with ATP leads to the dissociation of hsc73 from 16 S complexes and to the formation of high molecular weight aggregates. Prosubunit processing in isolated 16 S complexes does not, however, result in the formation of proteolytically active 20 S proteasomes which may me due to the fact that not all P-subunits can be efficiently processed in vitro. In contrast to previous assumptions subunit processing and formation of proteolytic activity do not coincide and final 20 S complex assembly seems to represent in part a separate event which requires additional factors or proteins which are not present or active in the purified 16 S precursor complexes. (C) 1997 Academic Press Limited. [References: 62]
机译:真核20 S蛋白酶体复合物的成熟通过多步组装途径中的13 S和16 S前体复合物发生。这些前体复合物包含α-亚基以及未加工的β-亚基前蛋白。我们已经纯化和表征了不同的蛋白酶体组装中间体,并分析了它们在体外支持β亚基前蛋白加工的能力。我们的数据表明,13 S和16 S蛋白酶体前体复合物不仅大小不同,而且在疏水色谱法中蛋白质含量和行为也不同。通过建立条件,使我们能够在体外分析β-亚基成熟,我们证明了β-亚基LMP2和δ同源同源蛋白的加工基本上发生在16 S前体复合物中。在13 S前体复合物中未观察到前蛋白加工活性。此外,可以用蛋白酶体特异性抑制剂抑制体外的前蛋白加工,但是对LMP2和δ的效率不同。代表原蛋白加工位点HGTT序列的肽对任何一个亚基的加工均无抑制作用。这些数据提供了进一步的证据,表明前蛋白加工是通过自催化机制发生的。我们的实验还证明,伴侣蛋白hsc73与16 S相关,但与13 S前体复合物无关。 Ln支持这种与ATP相互作用的特异性孵育可导致hsc73从16 S复合物中解离,并形成高分子量聚集体。但是,在分离的16 S复合物中的亚基加工不会导致形成蛋白水解活性的20 S蛋白酶体,这可能是由于并非所有P亚基都可以在体外有效地加工这一事实。与先前的假设相反,亚基的加工和蛋白水解活性的形成不重合,并且最终的20 S复合物组装似乎部分代表了一个单独的事件,这需要纯化的16 S前体复合物中不存在或没有活性的其他因子或蛋白质。 (C)1997 Academic Press Limited。 [参考:62]

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