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Idiotope regulation by isotype switch variants of two monoclonal antiidiotope antibodies

机译:通过两种单克隆抗独特型抗体的同种型开关变体来调节独特位

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摘要

Previous work has shown that the injection of antiidiotope antibodies specific for idiotopes of the germline-encoded anti-(4-hydroxy-3-nitro- phenyl) acetyl (NP) antibody B1-8 enhanced or suppressed the expression of B1-8 idiotopes in subsequent humoral anti-NP responses, depending on the dose and perhaps also the isotype of the injected antibody. To formally answer the question of whether the isotype of an antiidiotope determines its effector function in this type of idiotypic control, we have performed regulatory experiments with isotype switch variants selected from two hybridomas secreting anti-B1-8 idiotopes of CBA (Ighj) and C57BL/6 (Ighb) origin. The antibodies of each variant family differ from each other only in the constant region of the heavy chain. The results show that, irrespective of whether an antiidiotope antibody belongs to the IgG1, IgG2b, IgG2a, or IgE class, a 10-ng dose enhances idiotope expression whereas a dose of 10 micrograms exerts a suppressive effect. It emerges from the present and parallel data that the expression of antibody V regions resembling idiotypically that of antibody B1-8 can be enhanced and suppressed by any of four antiidiotope antibodies that recognize distinct idiotopes on those V regions. This suggests that the initial step in the regulatory process induced by an antiidiotope is its binding to antibody V regions carrying the target idiotope. The antiidiotopes preferentially regulate the expression of antibodies that coexpress with the target idiotope other B1-8 idiotopes, despite the fact that some B1-8 idiotopes are also expressed independently of each other in anti-NP responses of idiotypically unmanipulated mice. This finding may reflect high affinity binding of the antiidiotopes to the target against which they were originally raised (i.e., antibody B1-8) or, more likely, a preferential recognition of B1-8-like V regions by regulatory T cells.
机译:先前的工作表明,对种系编码的抗(4-羟基-3-硝基苯基)乙酰基(NP)抗体B1-8的独特位的抗位同位素抗体的注射增强或抑制了B1-8独特位的表达。随后的体液抗NP反应,具体取决于剂量以及所注射抗体的同种型。为了正式回答抗独特型的同种型是否决定其在这种独特型对照中的效应子功能的问题,我们已经进行了调控实验,研究了同种型转换变体,该变体选自两个分泌CBA(Ighj)和C57BL的抗B1-8独特型的杂交瘤。 / 6(Ighb)起源。每个变体家族的抗体仅在重链的恒定区彼此不同。结果表明,不管抗独特型抗体是否属于IgG1,IgG2b,IgG2a或IgE类,10 ng的剂量都能增强独特的表达,而10微克的剂量则具有抑制作用。从目前的和平行的数据表明,可以通过识别在那些V区域上不同的独特位的四种抗独特位抗体中的任何一种来增强和抑制类似于抗体B1-8的V区表达。这表明,由抗独特型引起的调节过程的第一步是其与携带靶独特型的抗体V区的结合。尽管某些B1-8同位素在独特型未操纵小鼠的抗NP响应中也彼此独立表达,但抗独特型的昆虫优先调节与靶同位型其他B1-8独特表达的抗体的表达。这一发现可能反映了抗独特型与最初针对它们的靶标(即抗体B1-8)的高亲和力结合,或者更可能是调节性T细胞对B1-8样V区的优先识别。

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