Brower R C, England R, Takeshita T, Kozlowski S, Margulies D H, Berzofsky J A, Delisi C
Department of Electrical, Computer and Systems Engineering, Boston University, MA 02215.
Mol Immunol. 1994 Nov;31(16):1285-93. doi: 10.1016/0161-5890(94)90079-5.
A physical chemical model of T cell stimulation by class I-peptide complexes was developed and used to analyse in vitro studies of gamma-interferon release as a function of the number of peptide and MHC molecules. The analysis provided reasonable estimates of well identified parameters, including equilibrium constants and the minimum number of T cell receptor-class I-peptide ternary complexes on a presenting cell required to activate T cells. The latter number was estimated as 3-5 per T cell. This is in distinct contrast to estimates in the literature of the number of peptide-MHC complexes required for activity, which is necessarily larger. The analysis also predicted that activity is potentiated by interaction between class I molecules, even if one member of the pair is not bound by antigen. The analytical approach used in this paper may be applicable to other activation systems.
开发了一种关于I类肽复合物刺激T细胞的物理化学模型,并用于分析γ干扰素释放的体外研究,该释放量是肽和MHC分子数量的函数。该分析对明确识别的参数提供了合理估计,包括平衡常数以及呈递细胞上激活T细胞所需的T细胞受体-I类肽三元复合物的最小数量。后者的数量估计为每个T细胞3 - 5个。这与文献中关于活性所需肽 - MHC复合物数量的估计明显不同,文献中的估计数量必然更大。该分析还预测,即使一对I类分子中的一个未被抗原结合,I类分子之间的相互作用也会增强活性。本文所采用的分析方法可能适用于其他激活系统。