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首页> 外文期刊>Molecular pharmacology. >Preservation of caspase-3 subunits from degradation contributes to apoptosis evoked by lactacystin: any single lysine or lysine pair of the small subunit is sufficient for ubiquitination.
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Preservation of caspase-3 subunits from degradation contributes to apoptosis evoked by lactacystin: any single lysine or lysine pair of the small subunit is sufficient for ubiquitination.

机译:从降解中保留caspase-3亚基可促进乳胞素诱发的凋亡:小亚基的任何一个赖氨酸或赖氨酸对都足以泛素化。

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摘要

Procaspase-3 (p32) is processed by upstream caspases to p12 and p20 subunits, which heterodimerize. Concomitant with formation of the active heterotetramer, p20 is autoprocessed to p17. Treatment of HL-60 cells with lactacystin, a selective inhibitor of the proteasome, exponentially increased caspase-3-like hydrolytic activity and induced apoptosis but had little or no effect on the activity of upstream caspase-8, caspase-9, or granzyme B. Lactacystin treatment decreased the p32 zymogen and evoked the accumulation of the p17 and p12 subunits. Treatment of transfected human retinoblast 911 cells with a proteasome inhibitor evoked the accumulation of epitope-tagged p12, p17, and p20 but had no effect on p32 zymogen. This result suggests that caspase-3 subunits, in contrast to the zymogen, are unstable because of degradation by the ubiquitin-proteasome system. Ubiquitin conjugates of p12 and p17 accumulated in cells that were cotransfected with p12 and a caspase inactive mutant of p17. Substitution of arginine for all eight lysines of p12 almost abolished its ubiquitination. Any single lysine or lysine pair was sufficient for p12 ubiquitination. Lactacystin treatment of HL-60 cells induced proteolytic processing of the X-linked inhibitor of apoptosis (XIAP) and decreased full-length XIAP, which is known to have ubiquitin-protein ligase activity for active caspase-3. These findings indicate that caspase-3 subunits can be degraded by the ubiquitin-proteasome system and suggest that lactacystin induces apoptosis in part by disabling the ubiquitin-protein ligase function of XIAP and by stabilizing active caspase-3 subunits.
机译:Procaspase-3(p32)由上游半胱天冬酶处理为p12和p20亚基,它们异源二聚化。与活性异四聚体的形成同时,p20被自动加工成p17。用乳酸菌素(一种蛋白酶体的选择性抑制剂)处理HL-60细胞,使caspase-3样水解活性呈指数增加,并诱导凋亡,但对上游caspase-8,caspase-9或颗粒酶B的活性几乎没有影响。乳杆菌肽治疗降低了p32酶原,并引起了p17和p12亚基的积累。用蛋白酶体抑制剂处理转染的人类成视网膜细胞911细胞引起了表位标记的p12,p17和p20的积累,但对p32酶原没有影响。该结果表明,与酶原相反,caspase-3亚基由于被泛素-蛋白酶体系统降解而不稳定。 p12和p17的泛素结合物积聚在与p12和p17的半胱天冬酶失活突变体共转染的细胞中。用p12的所有八个赖氨酸替代精氨酸几乎消除了其泛素化作用。任何一个赖氨酸或赖氨酸对都足以进行p12泛素化。乳杆菌肽对HL-60细胞的处理诱导了X连锁凋亡抑制剂(XIAP)的蛋白水解过程,并降低了全长XIAP,众所周知,XIAP对活性caspase-3具有泛素蛋白连接酶活性。这些发现表明,caspase-3亚基可以被泛素-蛋白酶体系统降解,并且表明乳酸菌素部分地通过使XIAP的泛素-蛋白连接酶功能丧失和稳定活性caspase-3亚基而诱导凋亡。

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