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首页> 外文期刊>Journal of Molecular Biology >REARRANGEMENT OF THE FORMER VL INTERFACE IN THE SOLUTION STRUCTURE OF A CAMELISED, SINGLE ANTIBODY VH DOMAIN
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REARRANGEMENT OF THE FORMER VL INTERFACE IN THE SOLUTION STRUCTURE OF A CAMELISED, SINGLE ANTIBODY VH DOMAIN

机译:前VL接口在固定单抗体VH域的溶液结构中的重排

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The solution structure of the isolated antibody heavy chain variable domain (VH)-P8 was determined by NMR spectroscopy. The VH had previously been modified (camelised) at three positions in its former antibody light chain variable domain (VL) interface to reduce hydrophobicity by mimicking camelid heavy chains naturally devoid of light chains. The architecture of two pleated beta-sheets and the conformation of the H1 and H2 loops in VH-P8 are very similar to those in non-camelised, VL-associated VH domains. Major differences concern the H3 loop, which no longer points towards the now absent VL, and three residues in the former VL interface. The side-chains of Val37 and Trp103 are buried and the Arg38 side-chain exposed in VH-P8. In non-camelised, VL-associated VH domains the side-chains of Val37 and Trp103 are in contact with the VL while the Arg38 side-chain is buried within the VH. Reorientation of Trp103 is due to the local structure in the beta-bulge of strand G. Reorientation of Val37 and Arg38 is caused by a disruption of regular beta-structure in strand C opposite the beta-bulge in strand C'. These changes, combined with the more hydrophilic side-chains of the camelised residues, reduce hydrophobicity and prevent non-specific binding of camelised VH domains, which proved critical for their use as small recognition units. The VH-P8 structure also indicates structural reasons for two other mutations specific for light-chain-lacking camel immunoglobins. Absence of the VH-typical Arg94/Asp101 salt bridge at the base of the H3 loop in VH-P8 may explain why a positively charged residue at position 94 is not conserved in camels. Reorientation of Val37 suggests a function of the camel-specific phenylalanine residue at this position in the hydrophobic core of light-chain-lacking camel heavy chains. (C) 1996 Academic Press Limited [References: 38]
机译:分离的抗体重链可变域(VH)-P8的溶液结构通过NMR光谱法确定。 VH之前已在其前抗体轻链可变域(VL)界面的三个位置进行了修饰(驼色),以通过模仿天然缺乏轻链的骆驼科重链来减少疏水性。两个折叠的β-折叠的结构以及VH-P8中H1和H2环的构象与非骆驼状,VL相关的VH域中的构象非常相似。主要区别在于H3环,该环不再指向现在不存在的VL,以及以前VL接口中的三个残基。 Val37和Trp103的侧链被掩埋,而Arg38侧链在VH-P8中暴露。在非骆驼状,VL相关的VH域中,Val37和Trp103的侧链与VL接触,而Arg38侧链被埋在VH中。 Trp103的重新定向是由于链G的β凸起中的局部结构引起的。Val37和Arg38的重新定向是由与链C'中的β凸起相对的链C中的规则β结构的破坏引起的。这些变化与驼峰残基的亲水性更高的侧链相结合,降低了疏水性并防止了驼峰VH域的非特异性结合,这对于将其用作小识别单元至关重要。 VH-P8结构还表明了另外两个对缺少轻链的骆驼免疫球蛋白具有特异性的突变的结构原因。在VH-P8中,H3环的底部没有VH典型的Arg94 / Asp101盐桥,这可以解释为什么骆驼中第94位的带正电荷的残基不保守。 Val37的重新取向表明骆驼特有的苯丙氨酸残基在缺少轻链的骆驼重链的疏水核中此位置的功能。 (C)1996 Academic Press Limited [参考号:38]

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