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抗霉素A和2-脱氧葡萄糖对人血小板分泌的影响。对酸性水解酶和腺嘌呤核苷酸分泌的差异抑制。

Effects of antimycin A and 2-deoxyglucose on secretion in human platelets. Differential inhibition of the secretion of acid hydrolases and adenine nucleotides.

作者信息

Holmsen H, Robkin L, Day H J

出版信息

Biochem J. 1979 Aug 15;182(2):413-9. doi: 10.1042/bj1820413.

Abstract
  1. Shape change, aggregation and secretion of dense-granule constituents in platelets differ in their dependence on cellular energy metabolism. The possibility that such a difference also exists between secretion of dense-granule constituents and acid hydrolases was investigated. 2. Human platelets were incubated with [(14)C]adenine in plasma, and then washed and resuspended in salt solutions. The effects of incubating the cells with antimycin A and 2-deoxyglucose on the concentrations of [(14)C]ATP, ADP, AMP, IMP and inosine plus hypoxanthine and on thrombin-induced secretion of ATP plus ADP and acid hydrolases were studied. The metabolic inhibitors only affected (14)C-labelled nucleotides, whereas thrombin only liberated unlabelled ATP and ADP. 3. The extent of secretion decreased progressively with time during incubation with the metabolic inhibitors. At any time the secretion of acid hydrolases, beta-N-acetylglucosaminidase, beta-glucuronidase and beta-galactosidase was inhibited to a greater extent than secretion of ATP plus ADP (dense-granule secretion). 4. Incubation with the metabolic inhibitors shifted the log (dose)-response relationship to higher thrombin concentrations, and with a greater shift for acid hydrolase secretion than for dense-granule secretion. 5. Antimycin, when present alone, caused a marked decrease in the rate of acid hydrolase secretion, but had no effect on dense-granule secretion. 6. These results further support the view that acid hydrolase secretion and dense-granule secretion are separate processes with different requirements for ATP energy. Acid hydrolase secretion, but not dense-granule secretion, appears to depend on a simultaneous rapid generation of ATP, which can be accomplished by oxidative, but not by glycolytic, ATP production.
摘要
  1. 血小板中致密颗粒成分的形状变化、聚集和分泌在对细胞能量代谢的依赖性方面存在差异。研究了致密颗粒成分的分泌与酸性水解酶之间是否也存在这种差异。2. 将人血小板与血浆中的[¹⁴C]腺嘌呤一起孵育,然后洗涤并重悬于盐溶液中。研究了用抗霉素A和2-脱氧葡萄糖孵育细胞对[¹⁴C]ATP、ADP、AMP、IMP以及肌苷加次黄嘌呤浓度的影响,以及对凝血酶诱导的ATP加ADP和酸性水解酶分泌的影响。代谢抑制剂仅影响¹⁴C标记的核苷酸,而凝血酶仅释放未标记的ATP和ADP。3. 在与代谢抑制剂孵育期间,分泌程度随时间逐渐降低。在任何时候,酸性水解酶(β-N-乙酰氨基葡萄糖苷酶、β-葡萄糖醛酸酶和β-半乳糖苷酶)的分泌受到的抑制程度都大于ATP加ADP的分泌(致密颗粒分泌)。4. 与代谢抑制剂孵育使对数(剂量)-反应关系向更高的凝血酶浓度偏移,并且酸性水解酶分泌的偏移幅度大于致密颗粒分泌。5. 单独存在时,抗霉素会导致酸性水解酶分泌速率显著降低,但对致密颗粒分泌没有影响。6. 这些结果进一步支持了这样一种观点,即酸性水解酶分泌和致密颗粒分泌是不同的过程,对ATP能量有不同的需求。酸性水解酶分泌似乎依赖于ATP的同时快速生成,这可以通过氧化而非糖酵解产生ATP来实现,但致密颗粒分泌并非如此。

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