Buonanno Martina, Langella Emma, Zambrano Nicola, Succoio Mariangela, Sasso Emanuele, Alterio Vincenzo, Di Fiore Anna, Sandomenico Annamaria, Supuran Claudiu T, Scaloni Andrea, Monti Simona Maria, De Simone Giuseppina
Istituto di Biostrutture e Bioimagini, CNR , Naples, Italy.
Dipartimento di Medicina Molecolare e Biotecnologie Mediche, Università degli Studi di Napoli Federico II and CEINGE Biotecnologie Avanzate SCaRL , Naples, Italy.
ACS Chem Biol. 2017 Jun 16;12(6):1460-1465. doi: 10.1021/acschembio.7b00055. Epub 2017 Apr 19.
Human Carbonic Anhydrase (hCA) IX is a membrane-associated member of the CA enzyme family, involved in solid tumor acidification. This enzyme is a marker of tumor hypoxia and a prognostic factor for several human cancers. In a recent paper, we showed that CA IX interacts with cullin-associated NEDD8-dissociated protein 1 (CAND1), a nuclear protein involved in gene transcription and assembly of SCF ubiquitin ligase complexes. A functional role for this interaction was also identified, since lower CA IX levels were observed in cells with decreased CAND1 expression via shRNA-mediated interference. In this paper, we describe the identification of the structural determinants responsible for the CA IX/CAND1 interaction by means of a multidisciplinary approach, consisting of binding assay measurements, molecular docking, and site-directed mutagenesis. These data open a novel scenario in the design of anticancer drugs targeting CA IX. Indeed, the knowledge of the structural determinants responsible for the CAND1/CA IX interaction provides the molecular basis to design molecules able to destabilize it. Due to the proposed function of CAND1 in stabilizing CA IX, these molecules could represent an efficient tool to lower the amount of CA IX in hypoxic cancer cells, thus limiting its action in survival and the metastatic spread of tumors.
人碳酸酐酶(hCA)IX是碳酸酐酶家族的一种膜相关成员,参与实体瘤的酸化过程。这种酶是肿瘤缺氧的标志物,也是多种人类癌症的预后因素。在最近的一篇论文中,我们表明CA IX与cullin相关的NEDD8解离蛋白1(CAND1)相互作用,CAND1是一种参与基因转录和SCF泛素连接酶复合物组装的核蛋白。还确定了这种相互作用的功能作用,因为通过shRNA介导的干扰在CAND1表达降低的细胞中观察到CA IX水平较低。在本文中,我们描述了通过多学科方法鉴定负责CA IX/CAND1相互作用的结构决定因素,该方法包括结合测定测量、分子对接和定点诱变。这些数据为设计靶向CA IX的抗癌药物开辟了新的前景。事实上,对负责CAND1/CA IX相互作用的结构决定因素的了解为设计能够破坏其稳定性的分子提供了分子基础。由于CAND1在稳定CA IX方面的假定功能,这些分子可能是降低缺氧癌细胞中CA IX含量的有效工具,从而限制其在肿瘤存活和转移扩散中的作用。