Ma J, Kearney J F, Hendershot L M
Department of Microbiology, University of Alabama, Birmingham.
Mol Immunol. 1990 Jul;27(7):623-30. doi: 10.1016/0161-5890(90)90004-j.
Immunoglobulin light chains are usually secreted from cells when they are synthesized alone or in molar excess of heavy chains, but, there have been reports of nonsecreted light chains. We wished to determine whether immunoglobulin heavy chain binding protein (BiP), which blocks the transport of free heavy chains, might be responsible for the lack of secretion of some light chains. In two murine lymphoid cell lines that synthesize but do not secrete immunoglobulin light chains, the free light chain polymers were found bound to BiP. Examination of 20 other cell lines and hybridomas failed to disclose any cells synthesizing free or excess light chains that associated with BiP, in all cases the free light chains were secreted as dimers. Despite their association with BiP and their blocked secretion, the aberrant light chains could combine with heavy chains and could be secreted as intact Ig molecules. Thus, while light chains do not usually express signals which allow them to bind to BiP, it appears that such signals can be expressed on certain light chains, resulting in their combination with BiP and blocked secretion. When single chain mutant cell lines are isolated from parental lines producing both heavy and light chains, they are almost always light chain producers suggesting that free heavy chains are much more toxic than free light chains. In both PC700 and P3X63Ag cells, however, clones that have lost either heavy chains or transport-defective light chains are present at the same frequency. Our findings that the light chains in both of these lines are associated with BiP raise the possibility that BiP actually contributes to heavy chain toxicity instead of preventing it.
免疫球蛋白轻链在单独合成或摩尔数超过重链时通常会从细胞中分泌出来,但也有非分泌型轻链的报道。我们想确定阻断游离重链运输的免疫球蛋白重链结合蛋白(BiP)是否可能是某些轻链缺乏分泌的原因。在两种合成但不分泌免疫球蛋白轻链的小鼠淋巴细胞系中,发现游离轻链聚合物与BiP结合。对其他20种细胞系和杂交瘤的检测未能发现任何合成与BiP相关的游离或过量轻链的细胞,在所有情况下,游离轻链均以二聚体形式分泌。尽管异常轻链与BiP结合且分泌受阻,但它们仍能与重链结合并作为完整的Ig分子分泌。因此,虽然轻链通常不表达使其能够与BiP结合的信号,但似乎某些轻链可以表达这样的信号,导致它们与BiP结合并分泌受阻。当从产生重链和轻链的亲代细胞系中分离出单链突变细胞系时,它们几乎总是轻链产生者,这表明游离重链比游离轻链毒性大得多。然而,在PC700和P3X63Ag细胞中,丢失重链或运输缺陷型轻链的克隆出现频率相同。我们发现这两种细胞系中的轻链都与BiP相关,这增加了BiP实际上促成重链毒性而非阻止其毒性的可能性。