Siebert G R, Harris J F, Gefter M L
J Immunol. 1978 Nov;121(5):1808-18.
We have examined certain aspects of IgG biosynthesis by constructing hybrids between MPC11 (gamma2b, kappa) and MOPC 315 (alpha,lambda2) that have lost the ability to synthesize one or the other heavy chain. Cells express the three chains in a stable fashion, and both autologous (parental) and heterologous (nonparental) H and L chain pairs form and are secreted. The alpha H chain was found in polymeric form when associated with the heterologous kappa L chain. The lambda2 L chain covalently assembled to the heterologous gamma2b H chain. Surprisingly, autologous pairing was always favored over heterologous pairing in vivo by 5 to 10:1 in terms of rate of assembly. Similar ratios were maintained in the secreted protein. These results suggest that co-expression of particular H and L chain pairs is predetermined. Evolution presumably operates to improve antigen recognition as well as rate of assembly of active molecules.
我们通过构建MPC11(γ2b,κ)和MOPC 315(α,λ2)之间的杂种细胞,研究了IgG生物合成的某些方面,这两种细胞已丧失合成其中一种重链的能力。细胞以稳定的方式表达这三条链,并且自体(亲本)和异源(非亲本)的重链和轻链对都能形成并分泌。当α重链与异源κ轻链结合时,发现其以聚合形式存在。λ2轻链与异源γ2b重链共价组装。令人惊讶的是,在体内,就组装速率而言,自体配对总是比异源配对更受青睐,比例为5到10:1。分泌蛋白中也保持了类似的比例。这些结果表明,特定重链和轻链对的共表达是预先确定的。推测进化的作用是提高抗原识别以及活性分子的组装速率。