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首页> 外文期刊>Journal of molecular signaling >Immature and mature species of the human Prostacyclin Receptor are ubiquitinated and targeted to the 26S proteasomal or lysosomal degradation pathways, respectively
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Immature and mature species of the human Prostacyclin Receptor are ubiquitinated and targeted to the 26S proteasomal or lysosomal degradation pathways, respectively

机译:人类前列环素受体的未成熟和成熟物种被泛素化并分别靶向26S蛋白酶体或溶酶体降解途径

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BackgroundThe human prostacyclin receptor (hIP) undergoes agonist-induced phosphorylation, desensitisation and internalisation and may be recycled to the plasma membrane or targeted for degradation by, as yet, unknown mechanism(s).ResultsHerein it was sought to investigate the turnover of the hIP under basal conditions and in response to cicaprost stimulation. It was established that the hIP is subject to low-level basal degradation but, following agonist stimulation, degradation is substantially enhanced. Inhibition of the lysosomal pathway prevented basal and agonist-induced degradation of the mature species of the hIP (46-66 kDa). Conversely, inhibition of the proteasomal pathway had no effect on levels of the mature hIP but led to time-dependent accumulation of four newly synthesised immature species (38-44 kDa). It was established that both the mature and immature species of the hIP may be polyubiquitinated and this modification may be required for lysosomal sorting of the mature, internalised receptors and for degradation of the immature receptors by the 26S proteasomes through the ER-associated degradation (ERAD) process, respectively. Moreover, these data substantially advance knowledge of the factors regulating processing and maturation of the hIP, a complex receptor subject to multiple post-translational modifications including N-glycosylation, phosphorylation, isoprenylation, palmitoylation, in addition to polyubiquitination, as determined herein.ConclusionThese findings indicate that the hIP is post-translationally modified by ubiquitination, which targets the immature species to the 26S proteasomal degradation pathway and the mature species to the lysosomal degradation pathway.
机译:背景人类前列环素受体(hIP)经历激动剂诱导的磷酸化,脱敏和内在化作用,并可能通过未知机制再循环到质膜或靶向降解,结果在此试图研究hIP的周转率在基础条件下并响应西卡前列素刺激。已经确定,hIP受到低水平的基础降解,但是在激动剂刺激后,降解显着增强。溶酶体途径的抑制阻止了基础和激动剂诱导的hIP(46-66 kDa)成熟物种的降解。相反,蛋白酶体途径的抑制对成熟hIP的水平没有影响,但是导致四种新合成的未成熟物种(38-44 kDa)的时间依赖性积累。已经确定,hIP的成熟和未成熟物种都可以被泛素化,对于成熟的内在受体的溶酶体分选以及26S蛋白酶体通过ER相关降解(ERAD)降解未成熟受体,可能需要这种修饰)过程。此外,这些数据大大提高了调控hIP加工和成熟的因素的知识,hIP是一种复杂的受体,除了多泛素化作用外,还经历了多种翻译后修饰,包括N-糖基化,磷酸化,异戊烯基化,棕榈酰化,此外还确定了泛泛素化。提示hIP被泛素化修饰后翻译,将未成熟的物种靶向26S蛋白酶体降解途径,成熟的物种靶向溶酶体降解途径。

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