Czech M P
J Cell Physiol. 1976 Dec;89(4):661-8. doi: 10.1002/jcp.1040890424.
Data obtained over the last two years pertinent to the thiol redox model for the modulation of hexose transport activity by insulin is summarized. The model proposes that activation of hexose transport in fat cells involves sulfhydryl oxidation to the disulfide form in a key protein component of the fat cell surface membrane. Theoretically, the rapid activation of transport by insulin may involve either the conversion of inactive membrane carriers to the active form as originally proposed, or the conversion of a low Vmax transport system to a high Vmax form. The present experiments showed that the percent inhibition of insulin-activated transport rates by submaximal levels of cytochalasin B was decreased compared to its effects on basal transport. Treatment of fat cells with N-ethylmaleimide inhibited cytochalasin B action but not transport activity. When insulin or the oxidant vitamin K5 was added to cells 5 minutes before the N-ethylmaleimide, the elevated transport activity was also resistant to the sulfhydryl reagent, but cytochalasin B retained its potent inhibitory effect on transport. The data demonstrate that unique properties characterize basal versus insulin-activated transport activity with respect to the sensitivity of cytochalasin B action to sulfhydryl blockade in isolated fat cells. The data are consistent with the concept that activation of transport activity reflects the conversion of a reduced (sulfhydryl) system characterized by a low Vmax to an oxidized (disulfide), high Vmax transport system.
总结了过去两年中获得的与胰岛素调节己糖转运活性的硫醇氧化还原模型相关的数据。该模型提出,脂肪细胞中己糖转运的激活涉及脂肪细胞表面膜关键蛋白质成分中的巯基氧化为二硫键形式。从理论上讲,胰岛素对转运的快速激活可能涉及如最初提出的将无活性的膜载体转化为活性形式,或者将低Vmax转运系统转化为高Vmax形式。目前的实验表明,与细胞松弛素B对基础转运的影响相比,其亚最大水平对胰岛素激活的转运速率的抑制百分比降低。用N-乙基马来酰亚胺处理脂肪细胞可抑制细胞松弛素B的作用,但不影响转运活性。当在添加N-乙基马来酰亚胺前5分钟向细胞中加入胰岛素或氧化剂维生素K5时,升高的转运活性也对巯基试剂具有抗性,但细胞松弛素B对转运仍保留其强大的抑制作用。数据表明,在分离的脂肪细胞中,就细胞松弛素B作用对巯基阻断的敏感性而言,基础转运活性与胰岛素激活的转运活性具有独特的特性。这些数据与以下概念一致,即转运活性的激活反映了以低Vmax为特征的还原(巯基)系统向氧化(二硫键)、高Vmax转运系统的转化。