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人免疫球蛋白轻链的特异性二聚化

Specific dimerization of the light chains of human immunoglobulin.

作者信息

Stevenson G T, Straus D

出版信息

Biochem J. 1968 Jul;108(3):375-82. doi: 10.1042/bj1080375.

Abstract
  1. The light chains of human immunoglobulin were allowed to dimerize in vitro on removal of the dispersing agents acetic acid or urea. 2. On electrophoresis in polyacrylamide gel at pH8.8 the dimers yielded up to nine regularly spaced bands. This approximates to the number of electrophoretic components known to occur among the monomers. 3. Single electrophoretic components of the dimers were isolated from the gel, dissociated into monomers, and subjected as such to electrophoresis in urea-containing gels. Each gave two adjacent bands. 4. Similarly, after all the light chains as monomers had been subjected to electrophoresis in urea-containing gels, single electrophoretic components were isolated and allowed to dimerize. When examined now as dimers in the absence of urea, each component gave two adjacent bands. 5. These findings are explicable on the following basis. (a) The dimerization of the light chains is specific, at least inasmuch as it occurs between monomers of the same electrophoretic mobilities. (b) With the buffer constant, different light chains undergo different changes in net charge on being transferred from urea-containing to urea-free solution; in this way two different chains of the same initial charge can acquire a charge difference of 1. 6. Experiments with Bence-Jones proteins and other homogeneous light chains gave results substantiating the conclusions (a) and (b).
摘要
  1. 去除分散剂乙酸或尿素后,人免疫球蛋白轻链在体外发生二聚化。2. 在pH8.8的聚丙烯酰胺凝胶中进行电泳时,二聚体产生多达九条规则间隔的条带。这与已知在单体中出现的电泳成分数量相近。3. 从凝胶中分离出二聚体的单个电泳成分,使其解离成单体,并在含尿素的凝胶中进行电泳。每个成分都给出两条相邻的条带。4. 同样,所有作为单体的轻链在含尿素的凝胶中进行电泳后,分离出单个电泳成分并使其二聚化。现在在无尿素的情况下作为二聚体检查时,每个成分都给出两条相邻的条带。5. 这些发现可基于以下理由解释。(a) 轻链的二聚化是特异性的,至少就其发生在具有相同电泳迁移率的单体之间而言是如此。(b) 在缓冲液恒定的情况下,不同的轻链从含尿素溶液转移到无尿素溶液时,净电荷会发生不同的变化;通过这种方式,两条初始电荷相同的不同链可以获得1的电荷差。6. 用本斯-琼斯蛋白和其他均质轻链进行的实验得出的结果证实了结论(a)和(b)。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc8d/1198822/9d6aed4a7530/biochemj00723-0027-a.jpg

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