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表现出高亲和力结合和冷球蛋白特性的单克隆IgM抗体。

Monoclonal IgM antibody exhibiting high-affinity binding and cryoglobulin properties.

作者信息

Ballard D W, Kranz D M, Voss E W

出版信息

Proc Natl Acad Sci U S A. 1983 Aug;80(16):5071-4. doi: 10.1073/pnas.80.16.5071.

Abstract

A monoclonal IgM antibody (18-2-3) derived from cell fusion of (NZB X NZW) F1 splenocytes following secondary immunization with fluorescein-conjugated keyhole limpet hemocyanin was shown to exhibit high intrinsic binding affinity and cryoinsolubility. Affinity-purified preparations were determined to be IgM by immunochemical, electrophoretic, and chromatographic analyses. An intrinsic association constant (Ka) of 2.9 X 10(10) M-1 (at 2 degrees C) was measured by first-order dissociation-rate analysis. Antibody solubility at low concentration (approximately equal to 50 micrograms/ml) was shown, by absorption spectroscopy, to be temperature dependent between 4 degrees C and 32 degrees C. Insolubility at low temperature (4 degrees C) was reversible in the presence of homologous fluorescyl hapten, indicative of active site involvement in the mechanism of cryoglobulin-18-2-3 complex formation. Characteristics of clone 18-2-3 are discussed in terms of (i) its potential use as a model for examining the mechanism of cryoprecipitation and (ii) the proposed relationship between affinity maturation and the IgM to IgG class switch.

摘要

一种单克隆IgM抗体(18-2-3),由(NZB×NZW)F1脾细胞在经荧光素偶联的钥孔戚血蓝蛋白二次免疫后细胞融合产生,显示出高内在结合亲和力和低温不溶性。通过免疫化学、电泳和色谱分析确定亲和纯化制剂为IgM。通过一级解离速率分析测得内在缔合常数(Ka)为2.9×10¹⁰ M⁻¹(在2℃时)。通过吸收光谱法表明,低浓度(约等于50微克/毫升)时抗体的溶解度在4℃至32℃之间取决于温度。在同源荧光半抗原存在下,低温(4℃)下的不溶性是可逆的,这表明活性位点参与了冷球蛋白-18-2-3复合物形成机制。从以下方面讨论了克隆18-2-3的特性:(i)其作为研究冷沉淀机制模型的潜在用途;(ii)亲和力成熟与IgM向IgG类别转换之间的拟议关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/dc4c/384190/b4d21f0b155d/pnas00642-0204-a.jpg

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