Workman C J, Pfund W P, Voss E W
Department of Microbiology, University of Illinois, Urbana 61801-3704, USA.
J Protein Chem. 1998 Oct;17(7):599-606. doi: 10.1007/BF02780961.
The anti-IgG properties of two dual-specific (anti-dsDNA and anti-IgG) monoclonal NZB/NZW F1-derived autoantibodies, BV 17-45 and BV 16-13, were studied to resolve the location and possible commonality of the IgG epitope. To determine if BV 17-45 and BV 16-13 recognized the same IgG epitope, the relative temperature sensitivity of the conformational IgG epitopes were evaluated using the conformational sensitive immunoassay. Comparison of the temperature sensitivity of the conformational immunoglobulin epitopes over a temperature range of 25-100 degrees C suggested that the epitope recognized by BV 17-45 was the same as the IgG epitope recognized by BV 16-13. Further studies with papain- and pepsin-generated F(ab')2, Fab, and Fc fragments of BV 17-45 and BV 16-13 revealed that the dual-specific autoantibodies BV 17-45 and BV 16-13 both bound an epitope in the hinge region of the IgG molecule. The potential correlation between these studies and the pathogenic nature of dual-specific autoantibodies is discussed.
研究了两种双特异性(抗双链DNA和抗IgG)单克隆NZB/NZW F1来源的自身抗体BV 17-45和BV 16-13的抗IgG特性,以确定IgG表位的位置和可能的共性。为了确定BV 17-45和BV 16-13是否识别相同的IgG表位,使用构象敏感免疫测定法评估了构象IgG表位的相对温度敏感性。在25至100摄氏度温度范围内对构象免疫球蛋白表位的温度敏感性进行比较,结果表明BV 17-45识别的表位与BV 16-13识别的IgG表位相同。对BV 17-45和BV 16-13经木瓜蛋白酶和胃蛋白酶消化产生的F(ab')2、Fab和Fc片段进行的进一步研究表明,双特异性自身抗体BV 17-45和BV 16-13均结合IgG分子铰链区的一个表位。讨论了这些研究与双特异性自身抗体致病性质之间的潜在关联。