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首页> 外文期刊>American Journal of Physiology >Role of MARCKS in regulated secretion from mast cells and airway goblet cells
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Role of MARCKS in regulated secretion from mast cells and airway goblet cells

机译:MARCKS在桅杆细胞和气道脚耳细胞中分泌分泌的作用

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MARCKS (myristoylated alanine-rich C kinase substrate) is postulated to regulate the passage of secretory granules through cortical actin in the early phase of exocytosis. There are, however, three proposed mechanisms of action, all of which were derived from studies using synthetic peptides representing either the central phos-phorylation site domain or the upstream, NH_2-terminal domain: it tethers actin to the plasma membrane and/or to secretory granules, and/or it sequesters PIP_2. Using MARCKS-null mice, we probed for a loss of function secretory phenotype in mast cells harvested from embryonic livers and maturated in vivo [embryonic hepatic-derived mast cells (eHMCs)]. Both wild-type (WT) and MARCKS-null eHMCs exhibited full exocytic responses upon FceRI receptor activation with DNP-BSA (2,4-dinitrophenyl-BSA), whether they were in suspension or adherent. The secretory responses of MARCKS-null eHMCs were consistently higher than those of WT cells, but the differences had sporadic statistical significance. The MARCKS-null cells exhibited faster secretory kinetics, however, achieving the plateau phase of the response with a t_(1/2) ~2.5-fold faster. Hence, MARCKS appears to be a nonessential regulatory protein in mast cell exocytosis but exerts a negative modulation. Surprisingly, the MARCKS NH2-terminal peptide, MANS, which has been reported to inhibit mucin secretion from airway goblet cells (Li Y, Martin LD, Spizz G, Adler KB.J Biol Chem 276: 40982-40990, 2001), inhibited hexosaminidase secretion from WT and MARCKS-null eHMCs, leading us to reexamine its effects on mucin secretion. Results from 'studies using peptide inhibitors with human bronchial epithelial cells and with binding assays using purified mucins suggested that MANS inhibited the mucin binding assay, rather than the secretory response.
机译:假设Marcks(MyRistoylated富含富含丙氨酸的富含C激酶底物)以通过在外毒性的早期阶段通过皮质肌动蛋白调节分泌颗粒的通过。然而,存在三种提出的作用机制,所有这些作用机制来自使用代表中枢磷酰胺 - 嗜铬位点或上游的合成肽的研究来源于NH_2-末端结构域:它将肌动蛋白和/或其致动肌动蛋白分泌颗粒和/或搅拌PIP_2。使用Marcks-Null小鼠,我们探讨了从胚胎肝脏收获的肥大细胞中的功能分泌表型的损失,并在体内效果[胚胎肝脏衍生的肥大细胞(EHMCS)]。无论它们是悬浮液或粘附,野生型(WT)和Marcks-Null EHMC都表现出对Fceri受体激活的完全外血响应。 Marcks-Null EHMCs的分泌反应始终高于WT细胞的分泌反应,但差异具有散发性统计学意义。然而,Marcks-Null细胞表现出更快的分泌动力学,实现了T_(1/2)速度更快的响应的平台阶段。因此,马克斯似乎是肥大细胞外尿病中的非必要调节蛋白,但施加阴性调节。令人惊讶的是,据报道,Marcks NH2末端肽,据报道,据报道,抑制来自气道戈尔博特细胞的粘蛋白分泌(Li Y,Martin Ld,Spizz G,Adler Kb.J Biol Chem 276:40982-40990,2001),抑制了己氨氨酸酶来自WT和MARCKS-NULL EHMC的分泌,导致我们重新抑制其对粘蛋白分泌的影响。 “使用人支气管上皮细胞使用肽抑制剂和使用纯化的粘蛋白的结合测定的研究结果表明,人们抑制了粘合蛋白结合测定,而不是分泌反应。

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