Gursky O, Li Y, Badger J, Caspar D L
Rosenstiel Basic Medical Sciences Research Center, Brandeis University, Waltham, Massachusetts 02254-9110.
Biophys J. 1992 Mar;61(3):604-11. doi: 10.1016/S0006-3495(92)81865-9.
Two localized monovalent cation binding sites have been identified in cubic insulin from 2.8 A-resolution difference electron density maps comparing crystals in which the Na+ ions have been replaced by Tl+. One cation is buried in a closed cavity between insulin dimers and is stabilized by interaction with protein carbonyl dipoles in two juxtaposed alternate positions related by the crystal dyad. The second cation binding site, which also involves ligation with carbonyl dipoles, is competitively occupied by one position of two alternate His B10 side chain conformations. The cation occupancy in both sites depends on the net charge on the protein which was varied by equilibrating crystals in the pH range 7-10. Detailed structures of the cation binding sites were inferred from the refined 2-A resolution map of the sodium-insulin crystal at pH 9. At pH 9, the localized monovalent cations account for less than one of the three to four positive counterion charges necessary to neutralize the negative charge on each protein molecule. The majority of the monovalent counterions are too mobile to show up in the electron density maps calculated using data only at resolution higher than 10 A. Monovalent cations of ionic radius less than 1.5 A are required for crystal stability. Replacing Na+ with Cs+, Mg++, Ca++ or La+++ disrupts the lattice order, but crystals at pH 9 with 0.1 M Li+, K+, NH4+, Rb+ or Tl+ diffract to at least 2.8 A resolution.
通过比较钠离子被铊离子取代后的晶体,从2.8埃分辨率的差分电子密度图中已确定了立方胰岛素中的两个局部单价阳离子结合位点。一个阳离子埋藏在胰岛素二聚体之间的封闭腔中,并通过与晶体二元相关的两个并列交替位置的蛋白质羰基偶极相互作用而稳定。第二个阳离子结合位点也涉及与羰基偶极的配位,被两个交替的组氨酸B10侧链构象之一竞争性占据。两个位点上的阳离子占有率取决于蛋白质上的净电荷,该净电荷通过在pH范围7至10内平衡晶体而变化。从pH 9时钠-胰岛素晶体的2埃分辨率精修图推断出阳离子结合位点的详细结构。在pH 9时,局部单价阳离子占中和每个蛋白质分子上负电荷所需的三到四个正抗衡离子电荷中的不到一个。大多数单价抗衡离子移动性太大,无法在仅使用高于10埃分辨率的数据计算的电子密度图中显示出来。晶体稳定性需要离子半径小于1.5埃的单价阳离子。用铯离子、镁离子、钙离子或镧离子取代钠离子会破坏晶格秩序,但pH 9时含有0.1 M锂离子、钾离子、铵离子、铷离子或铊离子的晶体衍射分辨率至少为2.8埃。