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Ultra-high resolution X-ray structures of two forms of human recombinant insulin at 100 K

机译:两种形式的人类重组胰岛素在100 K下的超高分辨率X射线结构

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摘要

The crystal structure of a commercially available form of human recombinant (HR) insulin, Insugen (I), used in the treatment of diabetes has been determined to 0.92 Å resolution using low temperature, 100 K, synchrotron X-ray data collected at 16,000 keV (λ = 0.77 Å). Refinement carried out with anisotropic displacement parameters, removal of main-chain stereochemical restraints, inclusion of H atoms in calculated positions, and 220 water molecules, converged to a final value of R = 0.1112 and Rfree = 0.1466. The structure includes what is thought to be an ordered propanol molecule (POL) only in chain D(4) and a solvated acetate molecule (ACT) coordinated to the Zn atom only in chain B(2). Possible origins and consequences of the propanol and acetate molecules are discussed. Three types of amino acid representation in the electron density are examined in detail: (i) sharp with very clearly resolved features; (ii) well resolved but clearly divided into two conformations which are well behaved in the refinement, both having high quality geometry; (iii) poor density and difficult or impossible to model. An example of type (ii) is observed for the intra-chain disulphide bridge in chain C(3) between Sγ6–Sγ11 which has two clear conformations with relative refined occupancies of 0.8 and 0.2, respectively. In contrast the corresponding S–S bridge in chain A(1) shows one clearly defined conformation. A molecular dynamics study has provided a rational explanation of this difference between chains A and C. More generally, differences in the electron density features between corresponding residues in chains A and C and chains B and D is a common observation in the Insugen (I) structure and these effects are discussed in detail. The crystal structure, also at 0.92 Å and 100 K, of a second commercially available form of human recombinant insulin, Intergen (II), deposited in the Protein Data Bank as 3W7Y which remains otherwise unpublished is compared here with the Insugen (I) structure. In the Intergen (II) structure there is no solvated propanol or acetate molecule. The electron density of Intergen (II), however, does also exhibit the three types of amino acid representations as in Insugen (I). These effects do not necessarily correspond between chains A and C or chains B and D in Intergen (II), or between corresponding residues in Insugen (I). The results of this comparison are reported.>Graphical abstractConformations of PheB25 and PheD25 in three insulin structures: implications for biological activity? Insulin residues PheB25 and PheD25 are considered to be important for insulin receptor binding and changes in biological activity occur when these residues are modified. In porcine insulin and Intergen (II) PheB25 adopts conformation B and PheD25 conformation D. However, unexpectedly PheB25 in Insugen (I) human recombinant insulin adopts two distinct conformations corresponding to B and D, Figure 1 and PheD25 adopts a single conformation corresponding to B not D, Figure 2. Conformations of this residue in the ultra-high resolution structure of Insugen (I) are therefore unique within this set. Figures were produced with Biovia, Discovery Studio 2016.
机译:使用低温,100 K,在16,000 keV下收集的同步加速器X射线数据,已确定用于治疗糖尿病的人重组(HR)胰岛素胰岛素(I)的市售形式的晶体结构为0.92Å分辨率(λ=0.77Å)。使用各向异性位移参数进行精制,去除主链立体化学约束,在计算的位置包含H原子和220个水分子,最终收敛到R = 0.1112和Rfree = 0.1466。该结构包括仅在链D(4)中被认为是有序的丙醇分子(POL)和仅在链B(2)中与Zn原子配位的溶剂化乙酸酯分子(ACT)。讨论了丙醇和乙酸分子的可能来源和后果。详细检查了三种在电子密度中氨基酸的表示形式:(i)清晰的特征清晰的尖峰; (ii)解析度好,但清楚地分为两个构型,在构型中表现良好,均具有高质量的几何形状; (iii)密度差,难以建模或无法建模。类型(ii)的一个例子是在Sγ6-Sγ11之间的链C(3)中的链内二硫桥,它具有两个清晰的构象,相对精细占比分别为0.8和0.2。相反,链A(1)中相应的S–S桥显示了一个明确定义的构象。分子动力学研究为链A和C之间的这种差异提供了合理的解释。更普遍地,链A和C中相应残基与链B和D中电子残基之间的电子密度特征差异是胰岛素(I)中的常见现象结构和这些影响进行了详细讨论。第二种商业化形式的人类重组胰岛素Intergen(II)的晶体结构(在0.92Å和100 K时)也以3W7Y的形式储存在蛋白质数据库中,而该形式否则未发表,此处与Insugen(I)结构进行了比较。在Intergen(II)结构中,没有溶剂化的丙醇或乙酸酯分子。但是,Intergen(II)的电子密度也确实表现出了三种形式的氨基酸表示,如Insugen(I)一样。这些作用未必在中间子(II)中的链A和C或链B和D之间或在胰岛素(I)中的相应残基之间对应。报告了此比较的结果。<!-fig ft0-> <!-fig @ position =“ anchor” mode = article f4-> <!-fig mode =“ anchored” f5-> < h3>图形摘要<!-fig / graphic | fig / alternatives / graphic mode =“ anchored” m1-> <!-标题a7->三种胰岛素结构中PheB25和PheD25的构型:对生物学活性的影响?胰岛素残基PheB25和PheD25被认为对胰岛素受体结合很重要,当这些残基被修饰时,生物学活性就会发生变化。在猪胰岛素和Intergen(II)中,PheB25采用构象B和PheD25构象D。但是,出乎意料的是,胰岛素(I)人重组胰岛素中的PheB25采用与B和D对应的两个不同构象,图1和PheD25采用与B对应的单个构象。图2中不是D。因此,在此组中,Insugen(I)的超高分辨率结构中此残基的构型是独特的。数字是由Biovia,Discovery Studio 2016制作的。

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