Eigenbrot C, Randal M, Presta L, Carter P, Kossiakoff A A
Department of Protein Engineering, Genentech, Inc., South San Francisco.
J Mol Biol. 1993 Feb 20;229(4):969-95. doi: 10.1006/jmbi.1993.1099.
The X-ray structures of 1 Fv and 2 Fab humanized anti-p185HER2 antibody fragments (IgG1-kappa) have been determined at a resolution between 2.7 A and 2.2 A. The antibodies are three different versions of a human antibody framework onto which the antigen recognition loops from a murine antibody (4D5) have been grafted. The sequences of the three versions differ in the framework region at positions L55, H78 and H102. The version 8 Fv fragment crystallizes in space group P2(1) with cell parameters a = 37.6 A, b = 63.4 A, c = 90.2 A, beta = 98.2 degrees, with two molecules per asymmetric unit, and has been refined against data 10.0 A-2.2 A to an R-factor of 18.3%. Versions 4 and 7 Fabs crystallize in space group P1 with cell parameters a = 39.2 A, b = 80.2 A, c = 86.1 A, alpha = 113.1 degrees, beta = 92.7 A, gamma = 102.6 A and two molecules per asymmetric unit. Version 4 has been refined against data 10.0 A-2.5 A resolution to an R-factor of 17.9%. Version 7 has been refined against data 10 A-2.7 A to an R-factor of 17.1%. The X-ray structures have been used to assess the accuracy of structural predictions made via molecular modeling, and they confirm the structural role of certain framework residues and the conformations of five of six complementarity determining regions (CDRS). The average deviation of the model from the X-ray structures is within the range observed among the X-ray structures for 81% of the C alpha atoms. Of the hydrogen bonds common to the X-ray structures, 94% of the main-chain-main-chain and 79% of the main-chain-side-chain ones were predicted by the model. The side-chain conformation was predicted correctly for 79% of the buried residues. The third CDR in the heavy chain is variable, differing by up to 8 A between molecules within an asymmetric unit. The structural relationship between variable domains of light and heavy chains is not significantly altered by the absence of constant domains in the Fv molecule. The antigen-binding potential of an unusual light chain sequence has been confirmed. The arginine at position 66 interacts with the first light chain CDR, but in a fashion somewhat different than predicted. A substitution of a leucine for an alanine side-chain directed between the beta-sheets has only relatively small and local effects.(ABSTRACT TRUNCATED AT 400 WORDS)
已测定1个Fv和2个Fab人源化抗p185HER2抗体片段(IgG1-κ)的X射线结构,分辨率在2.7埃至2.2埃之间。这些抗体是人类抗体框架的三种不同版本,其上嫁接了来自鼠源抗体(4D5)的抗原识别环。这三个版本的序列在框架区的L55、H78和H102位置有所不同。8号Fv片段在空间群P2(1)中结晶,晶胞参数为a = 37.6埃,b = 63.4埃,c = 90.2埃,β = 98.2°,每个不对称单元中有两个分子,并已针对10.0埃至2.2埃的数据进行精修,R因子为18.3%。4号和7号Fab在空间群P1中结晶,晶胞参数为a = 39.2埃,b = 80.2埃,c = 86.1埃,α = 113.1°,β = 92.7埃,γ = 102.6埃,每个不对称单元中有两个分子。4号已针对10.0埃至2.5埃分辨率的数据进行精修,R因子为17.9%。7号已针对10埃至2.7埃的数据进行精修,R因子为17.1%。X射线结构已用于评估通过分子建模进行的结构预测的准确性,它们证实了某些框架残基的结构作用以及六个互补决定区(CDR)中五个的构象。对于81%的Cα原子,模型与X射线结构的平均偏差在X射线结构之间观察到的范围内。在X射线结构共有的氢键中,模型预测了94%的主链-主链氢键和79%的主链-侧链氢键。对于79%的埋藏残基,侧链构象预测正确。重链中的第三个CDR是可变的,在一个不对称单元内的分子之间相差多达8埃。Fv分子中恒定区的缺失并未显著改变轻链和重链可变域之间的结构关系。已证实一种异常轻链序列的抗原结合潜力存在。66位的精氨酸与轻链的第一个CDR相互作用,但方式与预测的略有不同。在β折叠之间将丙氨酸侧链替换为亮氨酸仅产生相对较小的局部影响。(摘要截短于400字)