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The 2OS proteasome from Thermoplasma acidophilum: Insight on the catalytic mechanism for scission in a barrel.

机译:嗜酸嗜热菌中的2OS蛋白酶体:对桶中切开的催化机理的见解。

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摘要

The proteolytic activities of the proteasome multienzyme complex are essential to cell life. The archeabacterium Thermoplasma Acidophilum 20S proteasome has been selected for mechanistic studies based on its structural simplicity, exhibiting a homodimeric subunit array with an alpha 14beta14 barrel-shaped oligomeric structure versus the similar but more diverse population of subunits found in the eukaryotic proteasome.; In studies designed to provide insight into how substrate proteins gain entry into the proteasome complex, we have examined the interactive behavior of the proteasome with horse heart ferricytochrome c (cyt c). The chromophoric heme and tryptophan moieties within cyt c serve as useful probes to the presence and intactness of the substrate. Under conditions of temperature and denaturant which cause cyt c to unfold but do not alter the native state of the thermophilic proteasome, we have demonstrated that cyt c can gain entrance into the constricted entrance of the proteasome and is available for proteolytic degradation. Furthermore, in the presence of inhibitors of the proteosome we have shown that the unfolded cyt c can be sequestered inside the proteasome complex to form a quasi-stable host-guest complex in which the cyt c appears to be in a near native-like conformation.; Therefore, this system provides the ability to monitor a variety of things, including: (1) the degradative behavior of the proteasome on cyt c without the inhibitor and (2) the sequestering of cyt c as an intact protein inside the central chamber of the inhibited proteasome.; Data collected from UV-visible spectroscopy, high performance liquid chromatography (HPLC) and mass spectrometry provide evidence that intact cyt c can be sequestered within the inhibited proteasome. HPLC data show that accumulation of cyt c within the proteasome reaches saturation at an occupancy of one cyt c molecule per proteasome molecule with inhibition, and without inhibition substrate turnover can be observed.; In digest studies using the proteasome and horse heart cyt c, examination of peptide fragments reveals the effect of the covalently bound heme group on the proteasome's ability to digest cyt c. HPLC data show that the N-terminal region of cyt c is selectively cleaved into large heme bearing fragments that can be subsequently cleaved into shorter fragments. Both heme and non-heme bearing fragment amino acid sequences have been identified by MALDI mass spectrometry.
机译:蛋白酶体多酶复合物的蛋白水解活性对细胞生命至关重要。嗜热古生菌嗜酸性古菌20S蛋白酶体已基于其结构简单性而被选择用于机制研究,与真核蛋白酶体中发现的相似但差异更大的亚基群体相比,它具有具有α14beta14桶形寡聚结构的同二聚体亚基阵列。在旨在深入了解底物蛋白如何进入蛋白酶体复合物中的研究中,我们检查了蛋白酶体与马心脏亚铁色素c(cyt c)的相互作用。 cyt c中的发色血红素和色氨酸部分可作为有用的探针,用于检测底物的存在和完整性。在导致cyt c展开但不改变嗜热蛋白酶体天然状态的温度和变性剂条件下,我们已证明cyt c可以进入蛋白酶体的狭窄入口,并且可用于蛋白水解降解。此外,在存在蛋白体抑制剂的情况下,我们已经表明未折叠的cyt c可以被隔离在蛋白酶体复合物中,形成准稳定的宿主-客体复合物,其中cyt c似乎呈近乎天然的构象。 。;因此,该系统具有监测各种事物的能力,包括:(1)蛋白酶体在没有抑制剂的情况下在cyt c上的降解行为,以及(2)将cyt c封存为完整蛋白,位于细胞中央腔内。抑制蛋白酶体。从紫外线-可见光谱,高效液相色谱(HPLC)和质谱法收集的数据提供了完整的cyt c可以隔离在抑制的蛋白酶体内的证据。 HPLC数据表明,在每个蛋白酶体分子中有一个cyt c分子存在时,蛋白酶体中cyt c的积累达到饱和,而没有抑制作用,并且可以观察到底物更新。在使用蛋白酶体和马心脏cyt c进行的消化研究中,对肽片段的检查揭示了共价结合的血红素基团对蛋白酶体消化cyt c的能力的影响。 HPLC数据显示,cyt c的N端区域被选择性切割成带有大血红素的片段,随后可被切割成较短的片段。血红素和非血红素片段氨基酸序列均已通过MALDI质谱法鉴定。

著录项

  • 作者

    Huffman, Holly Ann.;

  • 作者单位

    University of California, Riverside.;

  • 授予单位 University of California, Riverside.;
  • 学科 Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 248 p.
  • 总页数 248
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:47:37

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