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Heat shock transcription factor 2 inhibits intestinal epithelial cell apoptosis through the mitochondrial pathway in ulcerative colitis

机译:热冲击转录因子2通过溃疡性结肠炎的线粒体途径抑制肠上皮细胞凋亡

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摘要

UC is a chronic inflammatory disease of the colonic mucosa and lacks effective treatments because of unclear pathogenesis. Excessive apoptosis of IECs damages the intestinal epithelial barrier and is involved in the progression of UC, but the mechanism is unknown. HSPs are important in maintaining homeostasis and regulate apoptosis through the mitochondrial pathway. In our previous studies, HSF2, an important regulator of HSPs, was highly expressed in UC patients and negatively correlated with inflammation in mice and IECs. Therefore, we hypothesized that HSF2 may protect against intestinal mucositis by regulating the apoptosis of IECs. In this study, a DSS-induced colitis model of hsf2(-/-) mice was used to explore the relationship between HSF2 and apoptosis in IECs for the first time. The expression of HSF2 increased in the WT + DSS group compared with that in the WT + H2O group. Moreover, the extent of apoptosis was more severe in the KO + DSS group than in the WT + DSS group. The results showed that HSF2 was negatively correlated with apoptosis in vivo. The expression of HSF2 in Caco-2 cells was changed by lentiviral transfection, and the expression of Bax, cytoplasmic Cyto-C, Cleaved Caspase-9 and Cleaved Caspase-3 were negatively correlated with the different levels of HSF2. These results suggest that HSF2 negatively regulates apoptosis of IECs through the mitochondrial pathway. This may be one of the potential mechanisms to explain the protective role of HSF2 in UC. (c) 2020 Elsevier Inc. All rights reserved.
机译:UC是结肠粘膜的慢性炎症性疾病,并且由于病因不明确而缺乏有效的治疗方法。 IECs过量凋亡损害肠上皮屏障并参与UC的进展,但机制是未知的。 HSP在维持稳态并通过线粒体途径调节细胞凋亡是重要的。在我们之前的研究中,HSF2是HSP的重要调节剂,在UC患者中高度表达,并与小鼠和IEC的炎症呈负相关。因此,我们假设通过调节IECS的凋亡,HSF2可以防止肠粘膜炎。在本研究中,使用HSF2( - / - )小鼠的DSS诱导的结肠炎模型,首次使用IECS HSF2与IECs细胞凋亡的关系。与WT + H2O基团中的重量+ DSS组HSF2的表达增加。此外,KO + DSS组细胞凋亡的程度比WT + DSS组更严重。结果表明,HSF2与体内细胞凋亡呈负相关。通过慢病毒转染改变了Caco-2细胞中HSF 2的表达,并且Bax,细胞质CYTO-C,切割的Caspase-9和切割的Caspase-3的表达与不同水平的HSF 2呈负相关。这些结果表明,HSF2通过线粒体途径对IECs的凋亡产生负面调节。这可能是解释HSF2在UC中的保护作用的潜在机制之一。 (c)2020 Elsevier Inc.保留所有权利。

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