May J M
Diabetes Research and Training Center, Vanderbilt University School of Medicine, Nashville, Tennessee 37232.
J Cell Physiol. 1988 May;135(2):332-8. doi: 10.1002/jcp.1041350222.
The human erythrocyte membrane carriers for hexoses and nucleosides have several structural features in common. In order to assess functional similarities, the effects of adenosine derivatives on hexose transport and cytochalasin B binding sites were studied. Adenosine inhibited zero-trans uptake of 3-O-methylglucose half-maximally at 5 mM, while more hydrophobic adenosine deaminase-resistant derivatives were ten- to 20-fold more potent transport inhibitors. However, degradation of adenosine accounted for very little of this difference in potency. Hexose transport was rapidly inhibited by N6-(L-2-phenylisopropyl)adenosine at 5 degrees C in a dose-dependent fashion (EC50 = 240 microM), to lower the transport Vmax without affecting the Km. A direct interaction with the carrier protein was further indicated by the finding that N6-(L-2-phenylisopropyl)adenosine competitively inhibited [3H]cytochalasin B binding to erythrocytes (Ki = 143 microM) and decreased [3H]cytochalasin B photolabeling of hexose carriers in erythrocyte ghosts. The cross-reactivity of adenosine and several of its derivatives with the hexose carrier suggests further homologies between the carriers for hexoses and nucleosides, possibly related to their ability to transport hydrophilic molecules through the lipid core of the plasma membrane.
人类红细胞中负责己糖和核苷转运的膜载体具有一些共同的结构特征。为了评估功能上的相似性,研究了腺苷衍生物对己糖转运和细胞松弛素B结合位点的影响。腺苷在5 mM时对3 - O - 甲基葡萄糖的零转运摄取具有半数最大抑制作用,而疏水性更强的抗腺苷脱氨酶衍生物作为转运抑制剂的效力要高10到20倍。然而,腺苷的降解在这种效力差异中所占比例极小。在5℃时,N6 -(L - 2 - 苯基异丙基)腺苷以剂量依赖方式迅速抑制己糖转运(EC50 = 240 microM),降低转运Vmax而不影响Km。N6 -(L - 2 - 苯基异丙基)腺苷竞争性抑制[3H]细胞松弛素B与红细胞的结合(Ki = 143 microM),并减少红细胞膜泡中己糖载体的[3H]细胞松弛素B光标记,这一发现进一步表明其与载体蛋白存在直接相互作用。腺苷及其几种衍生物与己糖载体的交叉反应性表明,己糖和核苷载体之间存在进一步的同源性,这可能与其通过质膜脂质核心转运亲水分子的能力有关。