首页> 美国卫生研究院文献>Biochemical Journal >Formyl peptides and ATP stimulate Ca2+ and Na+ inward currents through non-selective cation channels via G-proteins in dibutyryl cyclic AMP-differentiated HL-60 cells. Involvement of Ca2+ and Na+ in the activation of beta-glucuronidase release and superoxide production.
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Formyl peptides and ATP stimulate Ca2+ and Na+ inward currents through non-selective cation channels via G-proteins in dibutyryl cyclic AMP-differentiated HL-60 cells. Involvement of Ca2+ and Na+ in the activation of beta-glucuronidase release and superoxide production.

机译:甲酰基肽和ATP通过非选择性阳离子通道通过二丁酰环AMP分化的HL-60细胞中的G蛋白刺激Ca2 +和Na +内向电流。 Ca2 +和Na +参与激活β-葡萄糖醛酸苷酶的释放和超氧化物的产生。

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摘要

In human neutrophils, the chemotactic peptide N-formyl-L-methionyl-L-leucyl-L-phenylalanine (fMLP) induces increases in the intracellular free Ca2+ concentration ([Ca2+]i) with subsequent activation of beta-glucuronidase release and superoxide (O2-) production. Results from several laboratories suggest that the increase in [Ca2+]i is due to activation of non-selective cation (NSC) channels. We studied the biophysical characteristics, pharmacological modulation and functional role of NSC channels in dibutyryl cyclic AMP (Bt2cAMP)-differentiated HL-60 cells. fMLP increased [Ca2+]i by release of Ca2+ from intracellular stores and influx of Ca2+ from the extracellular space. fMLP also induced Mn2+ influx. Ca2+ and Mn2+ influxes were inhibited by 1-(beta-[3-(4-methoxyphenyl)propoxy]-4-methoxyphenethyl)-1H-imidazole hydrochloride (SK&F 96365). Under whole-cell voltage-clamp conditions, fMLP and ATP (a purinoceptor agonist) activated inward currents characterized by a linear current-voltage relationship and a reversal potential near 0 mV. NSC channels were substantially more permeable to Na+ than to Ca2+. SK&F 96365 inhibited fMLP- and ATP-stimulated currents with a half-maximal effect at about 3 microM. Pertussis toxin prevented stimulation by fMLP of NSC currents and reduced ATP-stimulated currents by about 80%. Intracellular application of the stable GDP analogue, guanosine 5'-O-[2-thio]diphosphate, completely blocked stimulation by agonists of NSC currents. In excised inside-out patches, single channel openings with an amplitude of 0.24 pA were observed in the presence of fMLP and the GTP analogue, guanosine 5'-O-[3-thio]triphosphate. The bath solution contained neither Ca2+ nor ATP. The current/voltage relationship was linear with a conductance of 4-5 pS and reversed at about 0 mV. fMLP-induced beta-glucuronidase release and O2- production were substantially reduced by replacement of extracellular CaCl2 or NaCl by ethylenebis(oxyethylenenitrilo)tetra-acetic acid and choline chloride respectively. In the absence of Ca2+ and Na+, fMLP was ineffective. SK&F 96365 inhibited fMLP-induced beta-glucuronidase release and O2- production in the presence of both Ca2+ and Na+, and in the presence of Ca2+ or Na+ alone. NaCl (25-50 mM) enhanced the basal and absolute extent of fMLP-stimulated GTP hydrolysis of heterotrimeric regulatory G-proteins in HL-60 membranes. The order of effectiveness of salts in enhancing GTP hydrolysis was LiCl > KCl > NaCl > choline chloride.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:在人类嗜中性粒细胞中,趋化肽N-甲酰基-L-甲硫酰基-L-亮氨酰-L-苯丙氨酸(fMLP)诱导细胞内游离Ca2 +浓度([Ca2 +] i)增加,随后激活β-葡萄糖醛酸苷酶释放和超氧化物( O2-)生产。几个实验室的结果表明[Ca2 +] i的增加是由于非选择性阳离子(NSC)通道的激活所致。我们研究了NSC通道在二丁酰环AMP(Bt2cAMP)分化的HL-60细胞中的生物物理特性,药理调节和功能作用。 fMLP通过从细胞内储存释放Ca2 +和从细胞外空间流入Ca2 +来增加[Ca2 +] i。 fMLP也引起Mn2 +流入。 Ca2 +和Mn2 +流入被1-(β-[3-(4-甲氧基苯基)丙氧基] -4-甲氧基苯乙基)-1H-咪唑盐酸盐(SK&F 96365)抑制。在全细胞电压钳制条件下,fMLP和ATP(嘌呤受体激动剂)激活了内向电流,其特征在于线性电流-电压关系和接近0 mV的反向电位。 NSC通道对Na +的渗透性比对Ca2 +的渗透性大。 SK&F 96365抑制fMLP和ATP刺激的电流,在约3 microM时有一半的最大作用。百日咳毒素阻止了fMLP对NSC电流的刺激,并使ATP刺激的电流降低了约80%。胞内施用稳定的GDP类似物鸟苷5'-O- [2-硫代]二磷酸,完全阻断了NSC电流激动剂的刺激。在切除的内向外贴片中,在存在fMLP和GTP类似物鸟苷5'-O- [3-硫代]三磷酸酯的情况下,观察到幅度为0.24 pA的单通道开口。浴液既不含Ca2 +也不含ATP。电流/电压关系为线性,电导为4-5 pS,并在约0 mV时反转。通过分别用亚乙基双(氧亚乙基三硝基)四乙酸和氯化胆碱替代细胞外CaCl2或NaCl可以大大降低fMLP诱导的β-葡萄糖醛酸苷酶的释放和O2的产生。在缺少Ca2 +和Na +的情况下,fMLP无效。在存在Ca2 +和Na +的情况下,以及仅存在Ca2 +或Na +的情况下,SK&F 96365抑制了fMLP诱导的β-葡萄糖醛酸苷酶的释放和O2的产生。 NaCl(25-50 mM)增强了HL-60膜中fMLP刺激的异源三聚体调节G蛋白的GTP水解的基础和绝对程度。盐增强GTP水解的有效性顺序为LiCl> KCl> NaCl>胆碱氯化物(摘要截短为400字)

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