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本文引用的文献

1
Zinc sensing receptor signaling, mediated by GPR39, reduces butyrate-induced cell death in HT29 colonocytes via upregulation of clusterin.锌感应受体信号转导,由 GPR39 介导,通过上调簇蛋白减少 HT29 结肠细胞中丁酸盐诱导的细胞死亡。
PLoS One. 2012;7(4):e35482. doi: 10.1371/journal.pone.0035482. Epub 2012 Apr 24.
2
Picomolar concentrations of free zinc(II) ions regulate receptor protein-tyrosine phosphatase β activity.皮摩尔浓度的游离锌(II)离子调节受体蛋白酪氨酸磷酸酶 β 的活性。
J Biol Chem. 2012 Mar 16;287(12):9322-6. doi: 10.1074/jbc.C111.320796. Epub 2012 Jan 24.
3
New perspectives of zinc coordination environments in proteins.蛋白质中锌配位环境的新视角。
J Inorg Biochem. 2012 Jun;111:110-6. doi: 10.1016/j.jinorgbio.2011.11.018. Epub 2011 Dec 1.
4
Functional role of NHE4 as a pH regulator in rat and human colonic crypts.NHE4 在大鼠和人结肠隐窝中作为 pH 调节剂的功能作用。
Am J Physiol Cell Physiol. 2012 Jan 15;302(2):C412-8. doi: 10.1152/ajpcell.00163.2011. Epub 2011 Nov 2.
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Upregulation of KCC2 activity by zinc-mediated neurotransmission via the mZnR/GPR39 receptor.锌介导的神经传递通过 mZnR/GPR39 受体上调 KCC2 活性。
J Neurosci. 2011 Sep 7;31(36):12916-26. doi: 10.1523/JNEUROSCI.2205-11.2011.
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Demand for Zn2+ in acid-secreting gastric mucosa and its requirement for intracellular Ca2+.胃酸分泌黏膜中对 Zn2+ 的需求及其对细胞内 Ca2+的需求。
PLoS One. 2011;6(6):e19638. doi: 10.1371/journal.pone.0019638. Epub 2011 Jun 15.
7
Extracellular pH in restricted domains as a gating signal for ion channels involved in transepithelial transport.细胞外受限区域的 pH 值作为跨上皮转运相关离子通道的门控信号。
Biol Pharm Bull. 2011;34(6):803-9. doi: 10.1248/bpb.34.803.
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News from the end of the gut--how the highly segmental pattern of colonic HCO₃⁻ transport relates to absorptive function and mucosal integrity.肠道末端传来的消息——结肠 HCO₃⁻ 转运的高度分段模式与吸收功能和黏膜完整性的关系。
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Expression of acid-sensing ion channels in intestinal epithelial cells and their role in the regulation of duodenal mucosal bicarbonate secretion.酸敏感离子通道在肠上皮细胞中的表达及其在十二指肠黏膜碳酸氢盐分泌调节中的作用。
Acta Physiol (Oxf). 2011 Jan;201(1):97-107. doi: 10.1111/j.1748-1716.2010.02207.x. Epub 2010 Nov 12.
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细胞外 pH 通过锌感应受体(ZnR/GPR39)的一个 Asp 残基调节锌信号。

Extracellular pH regulates zinc signaling via an Asp residue of the zinc-sensing receptor (ZnR/GPR39).

机构信息

Department of Morphology, Faculty of Health Sciences, Ben Gurion University of the Negev, Beer-Sheva 84105, Israel.

出版信息

J Biol Chem. 2012 Sep 28;287(40):33339-50. doi: 10.1074/jbc.M112.372441. Epub 2012 Aug 9.

DOI:10.1074/jbc.M112.372441
PMID:22879599
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3460437/
Abstract

Zinc activates a specific Zn(2+)-sensing receptor, ZnR/GPR39, and thereby triggers cellular signaling leading to epithelial cell proliferation and survival. Epithelial cells that express ZnR, particularly colonocytes, face frequent changes in extracellular pH that are of physiological and pathological implication. Here we show that the ZnR/GPR39-dependent Ca(2+) responses in HT29 colonocytes were maximal at pH 7.4 but were reduced by about 50% at pH 7.7 and by about 62% at pH 7.1 and were completely abolished at pH 6.5. Intracellular acidification did not attenuate ZnR/GPR39 activity, indicating that the pH sensor of this protein is located on an extracellular domain. ZnR/GPR39-dependent activation of extracellular-regulated kinase (ERK)1/2 or AKT pathways was abolished at acidic extracellular pH of 6.5. A similar inhibitory effect was monitored for the ZnR/GPR39-dependent up-regulation of Na(+)/H(+) exchange activity at pH 6.5. Focusing on residues putatively facing the extracellular domain, we sought to identify the pH sensor of ZnR/GPR39. Replacing the histidine residues forming the Zn(2+) binding site, His(17) or His(19), or other extracellular-facing histidines to alanine residues did not abolish the pH dependence of ZnR/GPR39. In contrast, replacing Asp(313) with alanine resulted in similar Ca(2+) responses triggered by ZnR/GPR39 at pH 7.4 or 6.5. This mutant also showed similar activation of ERK1/2 and AKT pathways, and ZnR-dependent up-regulation of Na(+)/H(+) exchange at pH 7.4 and pH 6.5. Substitution of Asp(313) to His or Glu residues restored pH sensitivity of the receptor. This indicates that Asp(313), which was shown to modulate Zn(2+) binding, is an essential residue of the pH sensor of GPR39. In conclusion, ZnR/GPR39 is tuned to sense physiologically relevant changes in extracellular pH that thus regulate ZnR-dependent signaling and ion transport activity.

摘要

锌激活特定的 Zn(2+)-感应受体 ZnR/GPR39,从而触发细胞信号转导,导致上皮细胞增殖和存活。表达 ZnR 的上皮细胞,特别是结肠细胞,经常面临细胞外 pH 值的变化,这些变化具有生理和病理意义。在这里,我们表明 HT29 结肠细胞中 ZnR/GPR39 依赖性 Ca(2+)反应在 pH 7.4 时最大,但在 pH 7.7 时减少约 50%,在 pH 7.1 时减少约 62%,在 pH 6.5 时完全消失。细胞内酸化不会减弱 ZnR/GPR39 的活性,表明该蛋白的 pH 感受器位于细胞外结构域上。在酸性细胞外 pH 值为 6.5 时,ZnR/GPR39 依赖性激活细胞外调节激酶 (ERK)1/2 或 AKT 途径被完全抑制。在 pH 6.5 时,ZnR/GPR39 依赖性上调 Na(+)/H(+)交换活性也观察到类似的抑制作用。我们专注于推测面向细胞外结构域的残基,试图确定 ZnR/GPR39 的 pH 感受器。取代形成 Zn(2+)结合位点的组氨酸残基 His(17)或 His(19),或其他面向细胞外的组氨酸残基为丙氨酸残基,不会消除 ZnR/GPR39 的 pH 依赖性。相比之下,用丙氨酸取代 Asp(313)导致 ZnR/GPR39 在 pH 7.4 或 6.5 时触发类似的 Ca(2+)反应。该突变体在 pH 7.4 和 pH 6.5 时也显示出类似的 ERK1/2 和 AKT 途径的激活,以及 ZnR 依赖性上调 Na(+)/H(+)交换。Asp(313)取代为 His 或 Glu 残基恢复了受体的 pH 敏感性。这表明,调节 Zn(2+)结合的 Asp(313)是 GPR39 pH 感受器的必需残基。总之,ZnR/GPR39 被调谐以感知细胞外 pH 值的生理相关变化,从而调节 ZnR 依赖性信号转导和离子转运活性。