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人骨髓瘤IgG半分子。分解代谢及生物学特性。

Human myeloma IgG half-molecules. Catabolism and biological properties.

作者信息

Spiegelberg H L

出版信息

J Clin Invest. 1975 Sep;56(3):588-94. doi: 10.1172/JCI108128.

Abstract

A human IgG1 myeloma protein that has a delection in the third constant domain of the heavy chain (Cgamma3) and forms two-chain half-molecules was studied for its in vivo turnover and its ability to fix C1q and hemolytic complement, to bind to human lymphocytes, neutrophils, and monocytes, and to induce a passive cutaneous reaction in guinea pigs. In both man and monkeys, the half-molecule was rapidly catabolized and in part excreted into the urine. The half-life in man was 4.3 days and the fractional turnover 165% per day; 7.6% of the intravascular pool was excreted into the urine per day. Although the 7S four-chain myeloma protein could not be obtained in a pure form, the elimination from the serum of a partially purified preparation suggested that it was also rapidly catabolized. The unaggregated half-molecule neither formed complexes with C1q, cound to human lymphocytes, neutrophils, and monocytes, nor elicited a reverse passive cutaneous reaction in guinea pigs. In contrast, the aggregated half-molecule fixed hemolytic complement and bound to the human white cells similarly to an intact IgG1 myeloma protein. In order to explain the biological activities of this half-moleculr, it is postulated that IgG1 may have several (at least two) submolecular sites for a given biological activity that are localized on both the Cgamma2 and Cgamma3 domains. Proteins having both sites would be capable of binding to C1q and Fc cell receptors in unaggregated in order to obtain half-molecule, must be aggregated in order to obtain this binding.

摘要

研究了一种人IgG1骨髓瘤蛋白,其重链的第三个恒定结构域(Cγ3)存在缺失,形成双链半分子,研究其体内周转率以及固定C1q和溶血补体的能力、与人淋巴细胞、中性粒细胞和单核细胞结合的能力,以及在豚鼠中诱导被动皮肤反应的能力。在人和猴体内,半分子均被迅速分解代谢,部分经尿液排出。在人体内的半衰期为4.3天,每天的分解代谢率为165%;每天有7.6%的血管内池经尿液排出。虽然无法获得纯的7S四链骨髓瘤蛋白,但部分纯化制剂从血清中的清除表明它也被迅速分解代谢。未聚集的半分子既不与C1q形成复合物,也不与人淋巴细胞、中性粒细胞和单核细胞结合,在豚鼠中也不引发反向被动皮肤反应。相比之下,聚集的半分子固定溶血补体并与人白细胞结合,方式类似于完整的IgG1骨髓瘤蛋白。为了解释这种半分子的生物学活性,推测IgG1可能有几个(至少两个)给定生物学活性的亚分子位点,这些位点定位于Cγ2和Cγ3结构域。具有这两个位点的蛋白质能够在未聚集的情况下与C1q和Fc细胞受体结合,为了获得半分子,必须进行聚集才能实现这种结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f2fa/301906/fd4be3056bb3/jcinvest00171-0077-a.jpg

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