Ehring B, Meyer T H, Eckerskorn C, Lottspeich F, Tampé R
Max-Planck-Institut für Biochemie, Martinsried, Germany.
Eur J Biochem. 1996 Jan 15;235(1-2):404-15. doi: 10.1111/j.1432-1033.1996.00404.x.
The proteasome is responsible for the non-lysosomal degradation of misfolded, transient, or ubiquitin-tagged proteins. This fact and the identification of two major-histocompatibility-complex-(MHC)-encoded proteasomal subunits, LMP2/7, suggest an important role of the proteasome in antigen processing. Using purified 20S proteasomes from a wild-type and a LMP2/7-deletion T lymphoblastoid cell line, we analyzed the effect of LMP2/7 on the peptidase and proteolytic activities of the complex in the context of various purification and activation methods. The incorporation of LMP2/7 alters the peptidase activity against fluorogenic substrates, but these effects are not reflected in the time-dependent degradation pattern of oxidized insulin B chain or of peptide epitopes of an antigenic protein. No effect of LMP2/7 on the degradation pattern of these substrates was observed by either reverse-phase chromatography, pool sequencing, or mass spectrometry. The 20S proteasome can cleave insulin B chain at nearly every position, showing that the P1 position alone does not determine the cleavage sites. The maximum of the length distribution of the end products, makes these ideal candidates for MHC display; yet we find that a natural epitope derived from human histone H3 is further degraded by 20S proteasomes. Alanine scans and substitutions with related amino acids of this epitope indicate that, as in insulin B chain, the cleavage sites are not determined by the P1 position alone.
蛋白酶体负责对错误折叠、短暂存在或带有泛素标签的蛋白质进行非溶酶体降解。这一事实以及两种主要组织相容性复合体(MHC)编码的蛋白酶体亚基LMP2/7的鉴定表明,蛋白酶体在抗原加工中具有重要作用。我们使用从野生型和LMP2/7缺失的T淋巴母细胞系中纯化的20S蛋白酶体,在各种纯化和激活方法的背景下,分析了LMP2/7对该复合体肽酶和蛋白水解活性的影响。LMP2/7的掺入改变了对荧光底物的肽酶活性,但这些影响并未反映在氧化胰岛素B链或抗原蛋白肽表位的时间依赖性降解模式中。通过反相色谱、池测序或质谱法均未观察到LMP2/7对这些底物降解模式的影响。20S蛋白酶体几乎可以在胰岛素B链的每个位置进行切割,这表明仅P1位置并不能决定切割位点。终产物长度分布的最大值使其成为MHC展示的理想候选物;然而,我们发现来自人类组蛋白H3的天然表位会被20S蛋白酶体进一步降解。对该表位进行丙氨酸扫描和用相关氨基酸替代表明,与胰岛素B链一样,切割位点并非仅由P1位置决定。