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Kinetics of association of anti-lysozyme monoclonal antibody D44.1 and hen-egg lysozyme.

机译:抗溶菌酶单克隆抗体D44.1与鸡卵溶菌酶缔合的动力学。

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摘要

Association rate constants for antigen/antibody associations have been computed by Brownian Dynamics simulations of D. L. Ermak and J. A. McCammon, J. Chem. Phys. 69:1352-1360, 1978. The model of monoclonal antibody (mAb) D44.1 is based on crystallographic data (B. C. Braden et al., J. Mol. Biol. 243:767-781, 1994). Electrostatic forces that steer the antigen to the antibody-combining site are computed by solving the linearized Poisson-Boltzmann equation. D44. 1-HEL complex displays very similar association motifs to a related anti-lysozyme antibody, HyHEL-5-HEL system. The computed association rate constants are comparable in the two systems, although the experimental affinity constants differ by three orders of magnitude (D. Tello et al., Biochem. Soc. Trans. 21:943-946, 1993; K. A. Hibbits et al., Biochemistry. 33:3584-3590, 1994). Simulations suggest that the origin of the differences in the affinity come from dissociation rate constants. We have also carried out simulation experiments on a number of mutant antibody fragment-HEL associations to address the role of electrostatics and, to a limited extent, the orientational aspects of association.
机译:抗原/抗体缔合的缔合速率常数已通过D.L.Ermak和J.A.McCammon,J.Chem。物理69:1352-1360,1978。单克隆抗体(mAb)D44.1的模型基于晶体学数据(B. C. Braden等,J。Mol。Biol。243:767-781,1994)。通过求解线性化的Poisson-Boltzmann方程,可以计算将抗原引导至抗体结合位点的静电力。 D44。 1-HEL复合物显示与相关的抗溶菌酶抗体HyHEL-5-HEL系统非常相似的缔合基序。尽管实验亲和力常数相差三个数量级,但在两个系统中计算出的缔合速率常数是可比较的(D. Tello等人,Biochem。Soc。Trans。21:943-946,1993; KA Hibbits等人。 ,Biochemistry.33:3584-3590,1994)。模拟表明,亲和力差异的根源来自解离速率常数。我们还对许多突变抗体片段-HEL关联进行了模拟实验,以解决静电的作用,并在一定程度上解决了关联的定向问题。

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