Goldbaum F A, Fields B A, Cauerhff A, Ysern X, Houdusse A, Eisele J L, Poljak R J, Mariuzza R A
Center for Advanced Research in Biotechnology, University of Maryland Biotechnology Institute, Rockville 20850.
J Mol Biol. 1994 Sep 2;241(5):739-43. doi: 10.1006/jmbi.1994.1549.
A complex between the Fv fragment of an anti-hen eggwhite lysozyme antibody (D1.3) and the Fv fragment of an antibody specific for an idiotypic determinant of D1.3 has been crystallized in a form suitable for X-ray diffraction analysis. Both Fv fragments were expressed in soluble form in Escherichia coli and purified by affinity chromatography; diffraction-quality crystals were only obtained following separation of each Fv into distinct isoelectric forms. The crystals belong to space group C2, have unit cell dimensions a = 152.8 A, b = 79.4 A, c = 51.5 A, beta = 100.2 degrees, and diffract to better than 2.2 A resolution. The solvent content of the crystals is approximately 60% (v/v) with one Fv-Fv complex in the asymmetric unit. The ability to readily express both components of an antigen-antibody system in bacteria will allow us to rigorously assess the energetic contribution of individual amino acids to complex formation through pairwise mutagenesis of interacting residues.
抗鸡卵清溶菌酶抗体(D1.3)的Fv片段与针对D1.3独特型决定簇的抗体的Fv片段之间的复合物已结晶成适合X射线衍射分析的形式。两个Fv片段均在大肠杆菌中以可溶形式表达,并通过亲和层析纯化;只有在将每个Fv分离成不同的等电形式后,才获得衍射质量的晶体。这些晶体属于空间群C2,晶胞参数为a = 152.8 Å,b = 79.4 Å,c = 51.5 Å,β = 100.2°,衍射分辨率优于2.2 Å。晶体的溶剂含量约为60%(v/v),不对称单位中有一个Fv-Fv复合物。能够在细菌中轻松表达抗原-抗体系统的两个组分,将使我们能够通过对相互作用残基进行成对诱变,严格评估单个氨基酸对复合物形成的能量贡献。