EMC3对小鼠肠上皮CFTR功能和钙动员至关重要。

IF 3.9 3区 医学 Q1 GASTROENTEROLOGY & HEPATOLOGY American journal of physiology. Gastrointestinal and liver physiology Pub Date : 2025-01-01 Epub Date: 2024-12-06 DOI:10.1152/ajpgi.00066.2024
Sarah Penrod, Xiaofang Tang, Changsuk Moon, Jeffrey A Whitsett, Anjaparavanda P Naren, Yunjie Huang
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引用次数: 0

摘要

膜蛋白,如囊性纤维化跨膜传导调节因子(CFTR),在胃肠道功能和健康中起着至关重要的作用。内质网(ER)膜蛋白复合物(EMC)是一种多亚基插入酶,在蛋白质合成过程中介导膜片段与脂质双层的结合。EMC是否调控肠上皮细胞膜蛋白的加工和功能尚不清楚。为了研究EMC在肠上皮中的作用,我们培养了肠上皮细胞中缺失EMC亚基3 (EMC3)的小鼠(EMC3ΔIEC)。EMC3ΔIEC小鼠是可以存活的,但与它们的野生型同伴相比,体型要小得多。虽然肠道结构总体上保持不变,但EMC3ΔIEC隐窝的形态发生了改变,特别是在隐窝的底部,杯状细胞和板状细胞减少。在emc3缺陷的上皮细胞中,包括CFTR在内的多种多面体膜蛋白水平降低。一些钙atp酶泵下调,EMC3ΔIEC类肠的钙动员受损。cftr介导的EMC3ΔIEC小鼠类器官肿胀在camp依赖性信号和钙促分泌剂刺激下受损。我们的研究表明,EMC通过调节膜蛋白生物生成和细胞内钙稳态,在维持肠上皮稳态中起关键作用。维持细胞内钙稳态可能是由EMC调节的一种普遍的细胞功能。
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EMC3 is critical for CFTR function and calcium mobilization in the mouse intestinal epithelium.

Membrane proteins, such as the cystic fibrosis transmembrane-conductance regulator (CFTR), play a crucial role in gastrointestinal functions and health. Endoplasmic reticulum (ER) membrane protein complex (EMC), a multi-subunit insertase, mediates the incorporation of membrane segments into lipid bilayers during protein synthesis. Whether EMC regulates membrane proteins' processing and function in intestinal epithelial cells remains unclear. To investigate the role of EMC in the intestinal epithelium, we generated mice in which EMC subunit 3 (EMC3) was deleted in intestinal epithelial cells (EMC3ΔIEC). EMC3ΔIEC mice were viable but notably smaller compared with their wild-type littermates. Although the intestinal structure was generally maintained, EMC3ΔIEC crypts exhibited altered morphology, particularly at the base of the crypts with decreased goblet cells and paneth cells. Levels of multiple polytopic membrane proteins, including CFTR, were decreased in EMC3-deficient epithelial cells. Several calcium ATPase pumps were downregulated, and calcium mobilization was impaired in EMC3ΔIEC enteroids. CFTR-mediated organoid swelling in EMC3ΔIEC mice was impaired in response to both cAMP-dependent signaling and calcium-secretagogue stimulation. Our study demonstrated that EMC plays a critical role in maintaining intestinal epithelium homeostasis by regulating membrane protein biogenesis and intracellular calcium homeostasis. Maintaining intracellular calcium homeostasis may be a universal cellular function regulated by EMC.NEW & NOTEWORTHY We generated mice in which endoplasmic reticulum membrane protein complex (EMC) subunit 3 was deleted from intestinal epithelium cells and studied the molecular functions of EMC in vivo. Our findings demonstrate the importance of intestinal EMC in the biogenesis of membrane proteins in vivo, including CFTR, and highlight its critical role in maintaining intracellular calcium homeostasis and, consequently, in calcium-dependent functions in the intestine and beyond.

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来源期刊
CiteScore
9.40
自引率
2.20%
发文量
104
审稿时长
1 months
期刊介绍: The American Journal of Physiology-Gastrointestinal and Liver Physiology publishes original articles pertaining to all aspects of research involving normal or abnormal function of the gastrointestinal tract, hepatobiliary system, and pancreas. Authors are encouraged to submit manuscripts dealing with growth and development, digestion, secretion, absorption, metabolism, and motility relative to these organs, as well as research reports dealing with immune and inflammatory processes and with neural, endocrine, and circulatory control mechanisms that affect these organs.
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