首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structural invariants of antigen binding: comparison of immunoglobulin VL-VH and VL-VL domain dimers.
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Structural invariants of antigen binding: comparison of immunoglobulin VL-VH and VL-VL domain dimers.

机译:抗原结合的结构不变量:免疫球蛋白VL-VH和VL-VL结构域二聚体的比较。

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摘要

Antigen-combining site arises by noncovalent association of the variable domain of the immunoglobulin heavy chain (VH) with that of the light chain (VL). To analyze the invariant features of the binding region (VL-VH domain interface), we compared the known immunoglobulin three-dimensional structures by a variety of methods. The interface forms a close-packed, twisted, prism-shaped "beta-barrel" characterized by cross-sectional dimensions 1.04 X 0.66 nm and a top-to-bottom twist angle of 212 degrees. The geometry of the interface is preserved via invariance of some 15 side chains, both inside the domains and on their surface. Buried polar residues form a conserved hydrogen-bonding network that has a similar topological connectivity in the two domain types; two hydrogen bonds contributed by invariant side chains extend across the interface and anchor the beta-sheets in their relative orientation. Invariant aromatic residues close-pack at the bottom of the binding-site beta-barrel with their ring planes oriented perpendicularly in the characteristic "herringbone" packing mode. Electrostatic computations that implicitly include solvent effects show the domains to be stabilized by large electrostatic forces. However, structures that were crystallized at lower pH have their electrostatic energies appropriately lowered, implying that full ionization of carboxyl side chains is essential for efficient electrostatic stabilization. The unusual mode of domain-domain association in the VL-VL dimer RHE correlates with its overall repulsive electrostatic energy (+54 kJ/mol), as opposed to negative (i.e., stabilizing) energy values (-263 to -543 kJ/mol) found in the domains of the other structures. The VL-VL dimer REI mimics closely the interface geometry of VL-VH dimers although its domain-domain contact area is lower by 18%.
机译:抗原结合位点是由免疫球蛋白重链(VH)与轻链(VL)可变域的非共价结合引起的。为了分析结合区(VL-VH结构域界面)的不变特征,我们通过多种方法比较了已知的免疫球蛋白三维结构。该界面形成密排的,扭曲的,棱柱形的“β-桶”,其特征在于横截面尺寸为1.04 X 0.66 nm,并且上下扭曲角为212度。界面的几何结构通过区域内部和表面上约15条侧链的不变性得以保留。埋藏的极性残基形成一个保守的氢键网络,该氢键网络在两种域类型中具有相似的拓扑连接性。由不变侧链贡献的两个氢键跨界面延伸,并以其相对方向锚定β-折叠。不变的芳香族残基在特征位点“人字形”堆积模式下紧密结合在结合位点β-桶的底部,其环平面垂直定向。隐含地包括溶剂效应的静电计算表明,这些区域可以通过较大的静电力来稳定。但是,在较低pH下结晶的结构的静电能适当降低,这意味着羧基侧链的完全电离对于有效的静电稳定至关重要。 VL-VL二聚体RHE中异常的域-域缔合模式与其整体排斥静电能(+54 kJ / mol)相关,与负(即稳定)能值(-263至-543 kJ / mol)相反)在其他结构的域中找到。 VL-VL二聚体REI紧密模拟VL-VH二聚体的界面几何结构,尽管其畴-畴接触面积低18%。

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