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Dynamic involvement of ATG5 in cellular stress responses

机译:ATG5动态参与细胞应激反应

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Autophagy maintains cell and tissue homeostasis through catabolic degradation. To better delineate the in vivo function for autophagy in adaptive responses to tissue injury, we examined the impact of compromised autophagy in mouse submandibular glands (SMGs) subjected to main excretory duct ligation. Blocking outflow from exocrine glands causes glandular atrophy by increased ductal pressure. Atg5 f/? ;Aqp5-Cre mice with salivary acinar-specific knockout (KO) of autophagy essential gene Atg5 were generated. While duct ligation induced autophagy and the expression of inflammatory mediators, SMGs in Atg5 f/? ;Aqp5-Cre mice, before ligation, already expressed higher levels of proinflammatory cytokine and Cdkn1a/p21 messages. Extended ligation period resulted in the caspase-3 activation and acinar cell death, which was delayed by Atg5 knockout. Moreover, expression of a set of senescence-associated secretory phenotype (SASP) factors was elevated in the post-ligated glands. Dysregulation of cell-cycle inhibitor CDKN1A/p21 and activation of senescence-associated β -galactosidase were detected in the stressed SMG duct cells. These senescence markers peaked at day 3 after ligation and partially resolved by day 7 in post-ligated SMGs of wild-type (WT) mice, but not in KO mice. The role of autophagy-related 5 (ATG5)-dependent autophagy in regulating the tempo, duration and magnitude of cellular stress responses in vivo was corroborated by in vitro studies using MEFs lacking ATG5 or autophagy-related 7 (ATG7) and autophagy inhibitors. Collectively, our results highlight the role of ATG5 in the dynamic regulation of ligation-induced cellular senescence and apoptosis, and suggest the involvement of autophagy resolution in salivary repair.
机译:自噬通过分解代谢来维持细胞和组织的稳态。为了更好地描述自噬在体内对组织损伤的适应性反应的体内功能,我们研究了自噬受损对遭受主要排泄导管结扎的小鼠下颌下腺(SMG)的影响。阻塞外分泌腺的流出会通过增加导管压力而导致腺萎缩。 Atg5 f /? ;产生具有自噬必需基因Atg5唾液腺腺特异性敲除(KO)的Aqp5-Cre小鼠。尽管导管结扎可诱导自噬和炎症介质的表达,但Atg5中的SMGs却存在。 ; Aqp5-Cre小鼠在结扎之前已经表达了较高水平的促炎细胞因子和Cdkn1a / p21信息。延长的连接期导致caspase-3活化和腺泡细胞死亡,这被Atg5​​敲除所延迟。此外,一组与衰老相关的分泌表型(SASP)因子的表达在结扎后的腺体中升高。在应激的SMG导管细胞中检测到细胞周期抑制剂CDKN1A / p21的失调和衰老相关的β-半乳糖苷酶的激活。这些衰老标记在连接后第3天达到峰值,到第7天在野生型(WT)小鼠的连接后SMG中部分溶解,但在KO小鼠中则没有。使用缺乏ATG5或自噬相关7(ATG7)和自噬抑制剂的MEF进行的体外研究证实了自噬相关5(ATG5)依赖性自噬在调节体内细胞应激反应的速度,持续时间和强度中的作用。总的来说,我们的研究结果突出了ATG5在动态调控结扎诱导的细胞衰老和凋亡中的作用,并提示自噬消退在唾液修复中的作用。

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