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新药研发前沿动态 / 医药领域趋势进展

张祥萍, 江程, 刘晓东, 刘李. 疾病状态下醛脱氢酶1A1活性与表达变化及其生理病理学意义[J]. 药学进展, 2019, 43(9): 667-677.
引用本文: 张祥萍, 江程, 刘晓东, 刘李. 疾病状态下醛脱氢酶1A1活性与表达变化及其生理病理学意义[J]. 药学进展, 2019, 43(9): 667-677.
ZHANG Xiangping, JIANG Cheng, LIU Xiaodong, LIU Li. Changes of Activity and Expression of ALDH1A1 in Disease States and Their Physiological and Pathological Significance[J]. Progress in Pharmaceutical Sciences, 2019, 43(9): 667-677.
Citation: ZHANG Xiangping, JIANG Cheng, LIU Xiaodong, LIU Li. Changes of Activity and Expression of ALDH1A1 in Disease States and Their Physiological and Pathological Significance[J]. Progress in Pharmaceutical Sciences, 2019, 43(9): 667-677.

疾病状态下醛脱氢酶1A1活性与表达变化及其生理病理学意义

Changes of Activity and Expression of ALDH1A1 in Disease States and Their Physiological and Pathological Significance

  • 摘要: 醛脱氢酶1A1是人体19种醛脱氢酶中非常重要的一种非P450氧化酶,参与维生素A类物质代谢的第2步:将视黄醛氧化成视黄酸,避免视黄醛的细胞毒性,因此也被称为视黄醛脱氢酶1。同时,视黄醛经过醛脱氢酶1A1催化代谢的产物视黄酸也是体内重要的活性物质,通过调节维甲类受体、维甲酸受体等核受体发挥多重生理作用。醛脱氢酶1A1的表达和活性在病理状态下会发生改变,参与代谢性疾病如肥胖和糖尿病等、精神类疾病如帕金森病和阿尔茨海默病等、肿瘤如肺癌和乳腺癌等多种疾病的进程。因此,醛脱氢酶1A1可能是疾病治疗的重要靶标之一。对醛脱氢酶1A1在疾病中的变化和作用机制,其结构和催化机制,以及相关抑制剂的研发进展进行综述。

     

    Abstract: Aldehyde dehydrogenase 1A1 (ALDH1A1), one of the 19 aldehyde dehydrogenases, is a very important non-P450 oxidase participating in the second step of vitamin A metabolism. To be specific, it irreversibly oxidizes retinal to retinoic acid to restrain the toxicity of retinal. Moreover, the metabolite, retinoic acid, is also an essential active substance which plays multiple physiological roles by regulating nuclear receptors such as retinoid X receptor (RXR) and retinoic acid receptor (RAR). ALDH1A1, whose expression and activity change under pathological conditions, is involved in the development of metabolic diseases (e.g. obesity and diabetes), psychiatric diseases (e.g. Parkinsonism and Alzheimer's disease), cancers (e.g. lung cancer and breast cancer), etc., and is thus a potential target to treat diseases. This paper summarizes the change and action mechanism of ALDH1A1 in disease progression, its structure and catalytic mechanism, as well as the research progress of its inhibitors.

     

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