Peeples Eric S, Mirnics Karoly, Korade Zeljka
Department of Pediatrics, University of Nebraska Medical Center, Omaha, NE 68198, USA.
Child Health Research Institute, Omaha, NE 68198, USA.
Biomolecules. 2024 Mar 28;14(4):410. doi: 10.3390/biom14040410.
Cholesterol is an essential molecule of life, and its synthesis can be inhibited by both genetic and nongenetic mechanisms. Hundreds of chemicals that we are exposed to in our daily lives can alter sterol biosynthesis. These also encompass various classes of FDA-approved medications, including (but not limited to) commonly used antipsychotic, antidepressant, antifungal, and cardiovascular medications. These medications can interfere with various enzymes of the post-lanosterol biosynthetic pathway, giving rise to complex biochemical changes throughout the body. The consequences of these short- and long-term homeostatic disruptions are mostly unknown. We performed a comprehensive review of the literature and built a catalogue of chemical agents capable of inhibiting post-lanosterol biosynthesis. This process identified significant gaps in existing knowledge, which fall into two main areas: mechanisms by which sterol biosynthesis is altered and consequences that arise from the inhibitions of the different steps in the sterol biosynthesis pathway. The outcome of our review also reinforced that sterol inhibition is an often-overlooked mechanism that can result in adverse consequences and that there is a need to develop new safety guidelines for the use of (novel and already approved) medications with sterol biosynthesis inhibiting side effects, especially during pregnancy.
胆固醇是生命必需的分子,其合成可受到遗传和非遗传机制的抑制。我们在日常生活中接触到的数百种化学物质可改变甾醇生物合成。这其中还包括各类经美国食品药品监督管理局(FDA)批准的药物,包括(但不限于)常用的抗精神病药、抗抑郁药、抗真菌药和心血管药物。这些药物可干扰羊毛甾醇生物合成途径中的各种酶,从而在全身引发复杂的生化变化。这些短期和长期稳态破坏的后果大多未知。我们对文献进行了全面综述,并建立了一份能够抑制羊毛甾醇后生物合成的化学试剂目录。这一过程揭示了现有知识中的重大空白,主要分为两个领域:甾醇生物合成改变的机制以及甾醇生物合成途径中不同步骤抑制所产生的后果。我们综述的结果还强化了甾醇抑制是一种常被忽视的机制,可能导致不良后果,并且有必要针对具有甾醇生物合成抑制副作用的(新型和已批准的)药物的使用制定新的安全指南,尤其是在孕期。