首页> 外文期刊>American Journal of Physiology >Effects of Helicobacter pylori on intracellular Ca2+ signaling in normal human gastric mucous epithelial cells.
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Effects of Helicobacter pylori on intracellular Ca2+ signaling in normal human gastric mucous epithelial cells.

机译:幽门螺杆菌对正常人胃黏膜上皮细胞内Ca2 +信号转导的影响。

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In stomach, Helicobacter pylori (Hp) adheres to gastric mucous epithelial cells (GMEC) and initiates several different signal transduction events. Alteration of intracellular Ca2+ concentration ([Ca2+]i) is an important signaling mechanism in numerous bacteria-host model systems. Changes in [Ca2+]i induced by Hp in normal human GMEC have not yet been described; therefore, we examined effects of Hp on [Ca2+]i in normal human GMEC and a nontransformed GMEC line (HFE-145). Cultured cells were grown on glass slides, porous filters, or 96-well plates and loaded with fura 2 or fluo 4. Hp wild-type strain 60190 and vacA-, cagA-, and picB-/cagE- isogenic mutants were incubated with cells. Changes in [Ca2+]i were recorded with a fluorimeter or fluorescence plate reader. Wild-type Hp produced dose-dependent biphasic transient [Ca2+]i peak and plateau changes in both cell lines. Hp vacA- isogenic mutant produced changes in [Ca2+]i similar to those produced by wild type. Compared with wild type, cagA- and picB-/cagE- isogenic mutants produced lower peak changes and did not generate a plateau change. Preloading cultures with intracellular Ca2+ chelator BAPTA blocked all Hp-induced [Ca2+]i changes. Thapsigargin pretreatment of cultures to release Ca2+ from internal stores reduced peak change. Extracellular Ca2+ removal reduced plateau response. Hp-induced peak response was sensitive to G proteins and PLC inhibitors. Hp-induced plateau change was sensitive to G protein inhibitors, src kinases, and PLA2. These findings are the first to show that H. pylori alters [Ca2+]i in normal GMEC through a Ca2+ release/influx mechanism that depends on expression of cagA and picB/cagE genes.
机译:在胃中,幽门螺杆菌(Hp)粘附在胃粘膜上皮细胞(GMEC)上,并引发几种不同的信号转导事件。细胞内Ca 2+浓度([Ca 2+] i)的改变是许多细菌-宿主模型系统中的重要信号传导机制。 Hp诱导的正常人GMEC中[Ca2 +] i的变化尚未描述。因此,我们在正常人GMEC和未转化的GMEC品系(HFE-145)中研究了Hp对[Ca2 +] i的影响。培养的细胞在载玻片,多孔滤膜或96孔板上生长,并装入fura 2或fluo4。将Hp野生型菌株60190和vacA-,cagA-和picB- / cagE-同基因突变体与细胞一起孵育。用荧光计或荧光板读数器记录[Ca 2+] i的变化。野生型Hp在两种细胞系中均产生剂量依赖性的双相瞬时[Ca2 +] i峰和平台变化。 Hp vacA-等基因突变体产生的[Ca2 +] i变化与野生型相似。与野生型相比,cagA-和picB- / cagE-等基因突变体产生较低的峰变化,并且不产生平台变化。用细胞内Ca2 +螯合剂BAPTA预加载培养物可阻止所有Hp诱导的[Ca2 +] i变化。 Thapsigargin对培养物进行预处理以从内部存储中释放Ca2 +减少了峰变化。细胞外钙离子去除降低平台反应。 Hp诱导的峰响应对G蛋白和PLC抑制剂敏感。 Hp诱导的高原变化对G蛋白抑制剂,src激酶和PLA2敏感。这些发现是第一个显示幽门螺杆菌通过依赖于cagA和picB / cagE基因表达的Ca2 +释放/流入机制改变正常GMEC中的[Ca2 +] i的证据。

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