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抗体 - 核酸复合物。对单链核酸具有特异性的鼠单克隆抗体抗原决定簇的鉴定。

Antibody-nucleic acid complexes. Identification of antigenic determinant of a murine monoclonal antibody specific for single-stranded nucleic acids.

作者信息

Munns T W, Liszewski M K, Tellam J T, Ebling F M, Hahn B H

出版信息

Biochemistry. 1982 Jun 8;21(12):2929-36. doi: 10.1021/bi00541a019.

Abstract

Cloned hybrid cells, selected for their ability to secret an IgG 2a immunoglobulin specific for single-stranded (ss) nucleic acids, were obtained by fusion of spleen cells from an unimmunized autoimmune MRL/1 pr male mouse with nonsecreting myeloma cells (MOPC-21, line Sp2/0-Ag 14). Designated MRss-1, this monoclonal antibody was (i) propagated by intraperitoneal injection of hybrid cells to pristane-treated. Balb/c mice, (ii) purified from the bulk of other proteins in ascites extracts by chromatography with DEAE-Sephacel adsorbent, and (iii) radiochemically labeled via reductive methylation using NaB3H4 and formaldehyde. The binding of 3H-labeled antibody to immobilized ssDNA- agarose, calf thymus) or soluble (fd DNA) ssDNA was rapid and dependent upon ssDNA and ionic strength, but not hydrogen ion concentration. Optimal binding occurred in both low and intermediate salt concentration (0.1-0.25 M NaCl), yet was completely abolished above 0.30 M NaCl. The presence of guanine (Gua)-containing mono-, oligo-, and polynucleotides also abolished and/or decreased 3H-labeled antibody binding to ssDNA-agarose. In these competition assays, the amount of Gua-containing mono-and oligonucleotides required to inhibit antibody binding by 50% (0.2-1.0 mg/mL) exceeded those of poly(G), rRNA, and fd DNA (i.e., 0.03-0.1 microgram/mL) by 4 orders of magnitude. In contrast, (deoxy)ribose 5'-phosphate as well as other nucleic acid derivatives devoid of Gua failed to inhibit antibody binding. The above findings were substantiated by the observation that 3H-labeled antibody bound to guanosine (G)- and guanidylate (pG)-conjugated Sepharose, yet not to other nucleoside (A, C, and U)- or nucleotide (pA, pC, and pU)-conjugated adsorbents. Last, the introduction of the methyl group at the N-2, O-6, and N-7 positions in the Gua ring system completely abolished antibody binding. Collectively, these results demonstrate that the MRss-1 antibody recognized single-stranded nucleic acid substrates by virtue of their content of guanidylate residues and, more specificity, by the presence of the Gua base moiety.

摘要

通过将未免疫的自身免疫性MRL/1pr雄性小鼠的脾细胞与非分泌性骨髓瘤细胞(MOPC-21,Sp2/0-Ag14系)融合,获得了克隆的杂交细胞,这些杂交细胞因其分泌对单链(ss)核酸具有特异性的IgG 2a免疫球蛋白的能力而被筛选出来。这种单克隆抗体被命名为MRss-1,其制备过程如下:(i)通过向经 pristane处理的Balb/c小鼠腹腔注射杂交细胞进行繁殖;(ii)用DEAE-琼脂糖凝胶吸附剂通过色谱法从腹水提取物中的其他大量蛋白质中纯化;(iii)使用NaB3H4和甲醛通过还原甲基化进行放射性化学标记。3H标记的抗体与固定化的ssDNA-琼脂糖(小牛胸腺)或可溶性(fd DNA)ssDNA的结合迅速,且依赖于ssDNA和离子强度,但不依赖于氢离子浓度。在低和中等盐浓度(0.1 - 0.25M NaCl)下均出现最佳结合,但在0.30M NaCl以上则完全消失。含有鸟嘌呤(Gua)的单核苷酸、寡核苷酸和多核苷酸的存在也消除和/或降低了3H标记的抗体与ssDNA-琼脂糖的结合。在这些竞争试验中,抑制抗体结合50%所需的含Gua的单核苷酸和寡核苷酸的量(0.2 - 1.0mg/mL)比聚(G)、rRNA和fd DNA(即0.03 - 0.1μg/mL)高出4个数量级。相比之下,(脱氧)核糖5'-磷酸以及其他不含Gua的核酸衍生物未能抑制抗体结合。上述发现通过以下观察得到证实:3H标记的抗体与鸟苷(G)和鸟苷酸(pG)偶联的琼脂糖凝胶结合,但不与其他核苷(A、C和U)或核苷酸(pA、pC和pU)偶联的吸附剂结合。最后,在Gua环系统的N-2、O-6和N-7位置引入甲基完全消除了抗体结合。总的来说,这些结果表明MRss-1抗体凭借其鸟苷酸残基的含量,更具体地说是凭借Gua碱基部分的存在来识别单链核酸底物。

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