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藤壶巨大肌纤维中胰岛素对糖转运的调节作用

Insulin regulation of sugar transport in giant muscle fibres of the barnacle.

作者信息

Baker P F, Carruthers A

出版信息

J Physiol. 1983 Mar;336:397-431. doi: 10.1113/jphysiol.1983.sp014588.

DOI:10.1113/jphysiol.1983.sp014588
PMID:6308227
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1198994/
Abstract
  1. Sugar transport in the giant muscle cells of Balanus nubilus is accelerated during contractile activity and exposure to porcine insulin. The characteristics of hexose-transfer regulation in the giant muscle cells have been examined by studying the transport of 3-O-methylglucose (a non-metabolized sugar) in both intact giant fibres and fibres subjected to internal solute control by internal dialysis.2. Sugar transport in barnacle muscle is mediated by a saturable process which is inhibited by both phloretin and cytochalasin B. Insulin increases the capacity of the transport system with little effect on its apparent affinity for sugar. Under the same conditions insulin increases 3-O-methylglucose-displaceable cytochalasin B binding. The effects of insulin on transport are half-maximal at 5 muM-insulin and are abolished by both insulin antibody and phloretin. The intact barnacle releases an insulin-like material in response to a rise in blood glucose levels.3. Insulin increases the cyclic GMP (cGMP) content and reduces the cyclic AMP (cAMP) content of barnacle muscle. Experiments with fibres injected with aequorin show that insulin also lowers cytosolic ionized Ca levels. The changes in cyclic nucleotide levels induced by insulin precede the effects on sugar transport and cytosolic ionized Ca. During repetitive contractile activity, cAMP, cGMP and ionized Ca levels are raised.4. Agents which raise the cAMP content of barnacle muscle normally inhibit sugar transport. Dibutyryl cAMP also inhibits transport. Alterations in cytosolic ionized Ca levels in intact fibres are without effect on sugar transport. Nevertheless, stimulation of transport by insulin is blunted when cytosolic ionized Ca is lowered by intracellular injection of the Ca-chelating agent, EGTA.5. Sugar uptake in the internally dialysed fibre is inhibited by intracellular application of cAMP. Internal application of Ca and cGMP stimulate sugar uptake in the dialysed fibre. Cyclic AMP reduces the capacity of the transport system whereas Ca and cGMP increase the capacity of the saturable transfer system. Cyclic AMP and cGMP act at kinetically independent sites. Internal ATP (2 mM) inhibits sugar uptake in the dialysed fibre by some 40%, possibly through the production of cAMP.6. External insulin stimulates sugar uptake in the dialysed fibre even when ionized Ca levels are buffered using EGTA. Stimulation by insulin requires the presence of cytosolic ATP and is potentiated by internal application of 1 mM-GTP. In the dialysed fibre stimulation of transport by insulin is greater than that brought about by Ca and cGMP.7. The stimulation of transport by insulin in the intact fibre and its inhibition by dibutyryl cAMP are abolished by intracellular injection of Gpp(NH)p. Injection of intact fibres with GTPgammaS potentiates the stimulation of transport by insulin and renders insulin-activation of transport irreversible. Injection of intact fibres with ATPgammaS leads to the irreversible inhibition of transport.8. Injection of intact fibres with cAMP phosphodiesterase lowers cAMP levels close to zero and stimulates sugar transport. Application of insulin to diesterase-injected fibres still stimulates transport in the absence of altered cytosolic cAMP.
摘要
  1. 在藤壶(Balanus nubilus)的巨大肌细胞中,收缩活动以及暴露于猪胰岛素时,糖转运加速。通过研究完整的巨大纤维以及经内部透析进行内部溶质控制的纤维中3 - O - 甲基葡萄糖(一种非代谢糖)的转运,已对巨大肌细胞中己糖转运调节的特性进行了研究。

  2. 藤壶肌肉中的糖转运由一个可饱和过程介导,该过程受到根皮素和细胞松弛素B的抑制。胰岛素增加了转运系统的能力,而对其对糖的表观亲和力影响很小。在相同条件下,胰岛素增加了3 - O - 甲基葡萄糖可置换的细胞松弛素B结合。胰岛素对转运的作用在5μM胰岛素时达到半数最大效应,并且被胰岛素抗体和根皮素消除。完整的藤壶会响应血糖水平升高而释放一种胰岛素样物质。

  3. 胰岛素增加藤壶肌肉中环状GMP(cGMP)的含量并降低环状AMP(cAMP)的含量。用水母发光蛋白注射纤维的实验表明,胰岛素还会降低胞质游离钙离子水平。胰岛素诱导的环状核苷酸水平变化先于对糖转运和胞质游离钙离子的影响。在重复性收缩活动期间,cAMP、cGMP和游离钙离子水平会升高。

  4. 通常会提高藤壶肌肉中cAMP含量的试剂会抑制糖转运。二丁酰cAMP也抑制转运。完整纤维中胞质游离钙离子水平的改变对糖转运没有影响。然而,当通过细胞内注射钙螯合剂EGTA降低胞质游离钙离子时,胰岛素对转运的刺激作用会减弱。

  5. 细胞内应用cAMP会抑制内部透析纤维中的糖摄取。细胞内应用钙和cGMP会刺激透析纤维中的糖摄取。环状AMP降低转运系统的能力,而钙和cGMP增加可饱和转运系统的能力。环状AMP和cGMP作用于动力学上独立的位点。内部ATP(2 mM)通过可能产生cAMP抑制透析纤维中的糖摄取约40%。

  6. 即使使用EGTA缓冲游离钙离子水平,外部胰岛素仍会刺激透析纤维中的糖摄取。胰岛素的刺激作用需要胞质ATP的存在,并且通过细胞内应用1 mM - GTP会增强。在透析纤维中,胰岛素对转运的刺激作用大于钙和cGMP所引起的刺激作用。

  7. 细胞内注射Gpp(NH)p可消除完整纤维中胰岛素对转运的刺激作用以及二丁酰cAMP对其的抑制作用。用GTPγS注射完整纤维会增强胰岛素对转运的刺激作用,并使胰岛素激活的转运不可逆。用ATPγS注射完整纤维会导致转运的不可逆抑制。

  8. 用cAMP磷酸二酯酶注射完整纤维会使cAMP水平降至接近零并刺激糖转运。在不存在胞质cAMP改变的情况下,将胰岛素应用于注射了磷酸二酯酶的纤维仍会刺激转运。

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