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开发选择性抑制剂用于人醛脱氢酶 3A1(ALDH3A1)以增强环磷酰胺的细胞毒性。

Development of selective inhibitors for human aldehyde dehydrogenase 3A1 (ALDH3A1) for the enhancement of cyclophosphamide cytotoxicity.

出版信息

Chembiochem. 2014 Mar 21;15(5):701-12. doi: 10.1002/cbic.201300625.

Abstract

Aldehyde dehydrogenase 3A1 (ALDH3A1) plays an important role in many cellular oxidative processes, including cancer chemoresistance, by metabolizing activated forms of oxazaphosphorine drugs such as cyclophosphamide (CP) and its analogues, such as mafosfamide (MF), ifosfamide (IFM), and 4-hydroperoxycyclophosphamide (4-HPCP). Compounds that can selectively target ALDH3A1 could permit delineation of its roles in these processes and could restore chemosensitivity in cancer cells that express this isoenzyme. Here we report the detailed kinetic and structural characterization of an ALDH3A1-selective inhibitor, CB29, previously identified in a high-throughput screen. Kinetic and crystallographic studies demonstrate that CB29 binds within the aldehyde substrate-binding site of ALDH3A1. Cellular proliferation of ALDH3A1-expressing lung adenocarcinoma (A549) and glioblastoma (SF767) cell lines, as well as ALDH3A1 non-expressing lung fibroblast (CCD-13Lu) cells, is unaffected by treatment with CB29 and its analogues alone. However, sensitivity toward the anti-proliferative effects of mafosfamide is enhanced by treatment with CB29 and its analogue in the tumor cells. In contrast, the sensitivity of CCD-13Lu cells toward mafosfamide was unaffected by the addition of these same compounds. CB29 is chemically distinct from the previously reported small-molecule inhibitors of ALDH isoenzymes and does not inhibit ALDH1A1, ALDH1A2, ALDH1A3, ALDH1B1, or ALDH2 isoenzymes at concentrations up to 250 μM. Thus, CB29 is a novel small molecule inhibitor of ALDH3A1, which might be useful as a chemical tool to delineate the role of ALDH3A1 in numerous metabolic pathways, including sensitizing ALDH3A1-positive cancer cells to oxazaphosphorines.

摘要

醛脱氢酶 3A1(ALDH3A1)在许多细胞氧化过程中发挥重要作用,包括癌症的化学抗性,通过代谢激活形式的恶唑磷类药物,如环磷酰胺(CP)及其类似物,如 mafosfamide(MF)、异环磷酰胺(IFM)和 4-羟过氧环磷酰胺(4-HPCP)。能够选择性靶向 ALDH3A1 的化合物可以使其在这些过程中的作用得以阐明,并可以恢复表达这种同工酶的癌细胞的化学敏感性。本文报道了先前在高通量筛选中发现的 ALDH3A1 选择性抑制剂 CB29 的详细动力学和结构特征。动力学和晶体学研究表明,CB29 结合在 ALDH3A1 的醛底物结合位点内。ALDH3A1 表达的肺腺癌(A549)和神经胶质瘤(SF767)细胞系以及 ALDH3A1 不表达的肺成纤维细胞(CCD-13Lu)的细胞增殖不受 CB29 及其类似物单独处理的影响。然而,用 CB29 及其类似物处理可增强肿瘤细胞对 mafosfamide 的抗增殖作用的敏感性。相比之下,相同化合物的添加对 CCD-13Lu 细胞对 mafosfamide 的敏感性没有影响。CB29 在化学上与先前报道的 ALDH 同工酶的小分子抑制剂不同,并且在高达 250 μM 的浓度下不抑制 ALDH1A1、ALDH1A2、ALDH1A3、ALDH1B1 或 ALDH2 同工酶。因此,CB29 是一种新型的 ALDH3A1 小分子抑制剂,可作为一种化学工具用于阐明 ALDH3A1 在许多代谢途径中的作用,包括使 ALDH3A1 阳性癌细胞对恶唑磷类药物敏感。

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