Singh V, Mavila A K, Kar S K
Institute of Self Organising Systems and Biophysics, North-Eastern Hill University, Meghalaya, India.
Bioconjug Chem. 1993 Nov-Dec;4(6):473-82. doi: 10.1021/bc00024a009.
With the aim of developing cytotoxic hybrid molecules which can be selectively targeted to specific cells in the gonads, a single chain ribosome-inactivating protein, gelonin, was conjugated to ovine luteinizing hormone (oLH) with the use of heterobifunctional cross-linking agents N-succinimidyl3-(2-pyridyldithio)-propionate (SPDP) and long-chain SPDP. Four hormonotoxins were synthesized having a variable spacer arm between oLH and gelonin. The spacer arms in C200A, C210A, C220A, and C230A were 13.6, 22.4, 22.4, and 31.2 A long, respectively. Extensive physiochemical and biochemical analysis revealed a 1:1 molar ratio of the ingredients in its oLH-S-S-gelonin conjugates. The linkage occurred through the epsilon-NH2 group of the alpha-subunit of oLH as judged from RP-HPLC analysis. The hormonotoxins retained substantial receptor binding ability, steriodogenic activity, and immunoreactivity of oLH and gelonin to their respective antibodies. Hormonotoxins bind to Leydig tumor cells via oLH, leaving gelonin free as judged by competitive displacement analysis. The hormonotoxins internalized to a sufficient degree to effectively inhibit protein synthesis. Upon comparison, immunoreactivity, receptor binding steroidogenic activity, and cytotoxicity of oLH-S-S-gelonin conjugates prepared with the use of only LC-SPDP (C230A, 31.2-A spacer arm) and by using both SPDP and LC-SPDP (C210A and C220A, 22.4-A spacer arm) were found to be comparable with that of conjugate prepared with SPDP alone (C200A, 13.6-A spacer arm). Therefore, it may be concluded that the cytotoxicity of oLH-based hormonotoxin remained unaffected with the use of long-chain spacer arms which are believed to be used generally to avoid steric hindrance.
为了开发能够选择性靶向性腺中特定细胞的细胞毒性杂交分子,利用异双功能交联剂N-琥珀酰亚胺基-3-(2-吡啶二硫基)-丙酸酯(SPDP)和长链SPDP,将单链核糖体失活蛋白米托蒽醌与绵羊促黄体生成素(oLH)偶联。合成了四种激素毒素,在oLH和米托蒽醌之间有可变的间隔臂。C200A、C210A、C220A和C230A中的间隔臂分别为13.6、22.4、22.4和31.2埃长。广泛的物理化学和生化分析表明,其oLH-S-S-米托蒽醌偶联物中各成分的摩尔比为1:1。从反相高效液相色谱分析判断,连接是通过oLHα亚基的ε-NH2基团发生的。这些激素毒素保留了oLH和米托蒽醌对其各自抗体的大量受体结合能力、类固醇生成活性和免疫反应性。通过竞争性置换分析判断,激素毒素通过oLH与睾丸间质细胞瘤细胞结合,使米托蒽醌游离。这些激素毒素内化到足以有效抑制蛋白质合成的程度。经比较,仅使用LC-SPDP(C230A,31.2埃间隔臂)以及同时使用SPDP和LC-SPDP(C210A和C220A,22.4埃间隔臂)制备的oLH-S-S-米托蒽醌偶联物的免疫反应性、受体结合类固醇生成活性和细胞毒性与仅使用SPDP(C200A,13.6埃间隔臂)制备的偶联物相当。因此,可以得出结论,基于oLH的激素毒素的细胞毒性不受长链间隔臂使用的影响,长链间隔臂通常被认为是用来避免空间位阻的。