首页> 外文期刊>American Journal of Physiology >UPR induces transient burst of apoptosis in islets of early lactating rats through reduced AKT phosphorylation via ATF4/CHOP stimulation of TRB3 expression.
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UPR induces transient burst of apoptosis in islets of early lactating rats through reduced AKT phosphorylation via ATF4/CHOP stimulation of TRB3 expression.

机译:UPR通过ATF4 / Chec刺激通过降低的AKT磷酸化诱导早期乳化大鼠胰岛胰岛胰岛细胞凋亡。

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摘要

Endocrine pancreas from pregnant rats undergoes several adaptations that comprise increase in beta-cell number, mass and insulin secretion, and reduction of apoptosis. Lactogens are the main hormones that account for these changes. Maternal pancreas, however, returns to a nonpregnant state just after the delivery. The precise mechanism by which this reversal occurs is not settled but, in spite of high lactogen levels, a transient increase in apoptosis was already reported as early as the 3rd day of lactation (L3). Our results revealed that maternal islets displayed a transient increase in DNA fragmentation at L3, in parallel with decreased RAC-alpha serine/threonine-protein kinase (AKT) phosphorylation (pAKT), a known prosurvival kinase. Wortmannin completely abolished the prosurvival action of prolactin (PRL) in cultured islets. Decreased pAKT in L3-islets correlated with increased Tribble 3 (TRB3) expression, a pseudokinase inhibitor of AKT. PERK and eIF2alpha phosphorylation transiently increased in islets from rats at the first day after delivery, followed by an increase in immunoglobulin heavy chain-binding protein (BiP), activating transcription factor 4 (ATF4), and C/EBP homologous protein (CHOP) in islets from L3 rats. Chromatin immunoprecipitation (ChIP) and Re-ChIP experiments further confirmed increased binding of the heterodimer ATF4/CHOP to the TRB3 promoter in L3 islets. Treatment with PBA, a chemical chaperone that inhibits UPR, restored pAKT levels and inhibited the increase in apoptosis found in L3. Moreover, PBA reduced CHOP and TRB3 levels in beta-cell from L3 rats. Altogether, our study collects compelling evidence that UPR underlies the physiological and transient increase in beta-cell apoptosis after delivery. The UPR is likely to counteract prosurvival actions of PRL by reducing pAKT through ATF4/CHOP-induced TRB3 expression.
机译:来自怀孕大鼠的内分泌胰腺经历了几种适应,包括β细胞数,质量和胰岛素分泌的增加,以及细胞凋亡的增加。乳酸是占这些变化的主要激素。然而,产妇胰腺,刚刚在交付后返回非妊娠状态。这种逆转发生的精确机制不会沉淀,但尽管存在高肝水平,但早期报告了凋亡的瞬态增加,如第3天的哺乳期(L3)。我们的研究结果表明,母体胰岛显示在L3的DNA碎片中的瞬时增加,与降低的RAC-α丝氨酸/苏氨酸 - 蛋白激酶(AKT)磷酸化(PAKT),一种已知的刺激激酶。 Wortmannin完全废除了催乳素(PRL)在培养的胰岛中的刺激作用。在L3 - 胰岛中降低PAKT与增加的3(TRB3)表达,AKT的伪转基因酶抑制剂相关。在递送后第一天的大鼠胰岛素和eIF2Alpha磷酸化瞬时增加,然后增加免疫球蛋白重链结合蛋白(BIP),激活转录因子4(ATF4),以及C / EBP同源蛋白(Chec)来自L3大鼠的胰岛。染色质免疫沉淀(芯片)和再芯片实验进一步证实了异二聚体ATF4 / Chect的结合在L3胰岛中的TRB3启动子上。用PBA治疗,一种抑制UPR的化学伴侣,恢复了PAKT水平并抑制L3中发现的细胞凋亡的增加。此外,PBA减少了来自L3大鼠的β细胞中的切碎和TrB3水平。完全,我们的研究收集了令人信服的证据,即UPR在递送后β细胞凋亡的生理和瞬态增加。 UPR可能通过ATF4 / Choce诱导的TRB3表达减少PAKT来抵消PRL的剥蚀效率。

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