Pollock R R, French D L, Metlay J P, Birshtein B K, Scharff M D
Department of Cell Biology, Albert Einstein College of Medicine, Bronx, NY 10461.
Eur J Immunol. 1990 Sep;20(9):2021-7. doi: 10.1002/eji.1830200921.
The metabolism of IgG immunoglobulins in the body is tightly regulated in order to maintain their intravascular concentration. Different subclasses may have different intravascular half-lives, and in the mouse, passively administered IgG2b disappears from the circulation more rapidly than IgG2a. We have attempted to localize the sequences in the constant region which are responsible for this difference by examining the intravascular metabolism of mutant immunoglobulins that were generated in tissue culture and have undergone deletions of individual constant region domains or contain different combinations of gamma 2b and gamma 2a CH2 and CH3 domains. Our results suggest that the regulation of intravascular metabolism is complex but indicate that sequences in the CH3 domain are important in determining the different intravascular half-lives of IgG2b and IgG2a antibodies in the mouse.
为维持其血管内浓度,体内IgG免疫球蛋白的代谢受到严格调控。不同亚类可能具有不同的血管内半衰期,在小鼠中,被动给予的IgG2b比IgG2a从循环中消失得更快。我们试图通过检测在组织培养中产生的、经历了单个恒定区结构域缺失或含有不同组合的γ2b和γ2a CH2及CH3结构域的突变免疫球蛋白的血管内代谢,来定位恒定区中导致这种差异的序列。我们的结果表明,血管内代谢的调控很复杂,但表明CH3结构域中的序列在决定小鼠中IgG2b和IgG2a抗体不同的血管内半衰期方面很重要。