Farid R S, Bianchi M E, Falciola L, Engelsberg B N, Billings P C
Department of Pathology, School of Dental Medicine, University of Pennsylvania, Philadelphia 19104, USA.
Toxicol Appl Pharmacol. 1996 Dec;141(2):532-9. doi: 10.1006/taap.1996.0319.
The HMG box domain is a DNA binding domain present in the nonhistone chromosomal proteins HMG1 and HMG2 and in other proteins involved in the regulation of gene expression. Previous studies have demonstrated that HMG1 and HMG2 bind with high affinity to DNA modified with the cancer chemotherapeutic drug cisplatin (CDDP). In this report, we compare the binding of full-length HMG1 and HMG2 and the HMG boxes present in these proteins to that of CDDP-DNA. Complexes between HMG1, HMG2, or HMG Box A + B and CDDP-DNA were stable at > or = 500 mM salt, while complexes between a single HMG box and CDDP-DNA exhibited decreased stability. Analysis of a series of HMG1 Box A mutant constructs revealed different affinities for CDDP-DNA. Two constructs containing a Phe to Ala substitution at position 19 and a Tyr to Gly substitution at position 71, are noteworthy; these peptides exhibited reduced affinity for CDDP-DNA. We have generated a structure of HMG1 Box A and used it, along with the results of our binding studies, to model its interaction with CDDP-DNA. HMG1 Box A binds in the minor groove of CDDP-DNA, in agreement with earlier studies. Our model predicts that Tyr71 partially intercalates and forms an H bond with the sugar-phosphate backbone. The model also suggests that Phe 19 does not directly interact with DNA, and hence an Ala substitution at position 19 may alter protein structure. This model should provide a framework for future studies examining HMG Box-DNA interactions.
HMG盒结构域是一种存在于非组蛋白染色体蛋白HMG1和HMG2以及其他参与基因表达调控的蛋白质中的DNA结合结构域。先前的研究表明,HMG1和HMG2与经癌症化疗药物顺铂(CDDP)修饰的DNA具有高亲和力结合。在本报告中,我们比较了全长HMG1和HMG2以及这些蛋白质中存在的HMG盒与CDDP-DNA的结合情况。HMG1、HMG2或HMG盒A + B与CDDP-DNA之间的复合物在盐浓度≥500 mM时稳定,而单个HMG盒与CDDP-DNA之间的复合物稳定性降低。对一系列HMG1盒A突变体构建体的分析揭示了对CDDP-DNA的不同亲和力。两个构建体,一个在第19位含有苯丙氨酸到丙氨酸的取代,另一个在第71位含有酪氨酸到甘氨酸的取代,值得注意;这些肽对CDDP-DNA的亲和力降低。我们构建了HMG1盒A的结构,并将其与我们的结合研究结果一起用于模拟其与CDDP-DNA的相互作用。与早期研究一致,HMG1盒A结合在CDDP-DNA的小沟中。我们的模型预测,酪氨酸71部分插入并与糖-磷酸骨架形成氢键。该模型还表明,苯丙氨酸19不直接与DNA相互作用,因此第19位的丙氨酸取代可能会改变蛋白质结构。该模型应为未来研究HMG盒与DNA相互作用提供一个框架。