Rampal A L, Pinkofsky H B, Jung C Y
Biochemistry. 1980 Feb 19;19(4):679-83. doi: 10.1021/bi00545a011.
Twenty cytochalasins were tested for binding to and for inhibition of glucose transport in human erythrocyte membrane. In this membrane three cytochalasin B (CB) binding sites have been identified. All but three of the cytochalasins bind at site II. On the other hand, only nine of them, which are structurally closely related, bind at site I and inhibit glucose transport. For site I (and site III) binding and glucose transport inhibitory activities (a) the macrocyclic ring in the cytochalasin molecule must be at least 13-membered, (b) the nature of the aromatic ring at C-10 is not important, (c) the C-20-C-23 region makes a major contribution, and (d) the C-5-C-7 segment has a relatively minor influence. These findings do not support a proposed mechanism which involves 24, C-23, C-20, and C-1 oxygen atoms for interaction of CB with glucose carrier. The structural requirements for site II activity are less stringent. The size and the structure of the macrocyclic ring and the nature of the aromatic residue at C-10 modulate this activity only slightly, if at all. Modifications in the C-5-C-7 region of the molecule, however, result in substantial changes in this activity.
对20种细胞松弛素进行了测试,以检测它们与人红细胞膜上葡萄糖转运的结合及抑制情况。在这种膜中已鉴定出三个细胞松弛素B(CB)结合位点。除了三种细胞松弛素外,其他所有细胞松弛素都在位点II结合。另一方面,其中只有九种在结构上密切相关,它们在位点I结合并抑制葡萄糖转运。对于位点I(和位点III)的结合及葡萄糖转运抑制活性而言:(a)细胞松弛素分子中的大环必须至少为13元环;(b)C-10位芳香环的性质并不重要;(c)C-20 - C-23区域起主要作用;(d)C-5 - C-7片段的影响相对较小。这些发现不支持一种提出的机制,该机制涉及24个、C-23、C-20和C-1氧原子用于CB与葡萄糖载体的相互作用。位点II活性的结构要求不太严格。大环的大小和结构以及C-10位芳香残基的性质对该活性的调节作用即使有也很轻微。然而,分子C-5 - C-7区域的修饰会导致该活性发生显著变化。