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Tumor cell metabolism: the marriage of molecular genetics and proteomics with cellular intermediary metabolism; proceed with caution!

机译:肿瘤细胞代谢:分子遗传学和蛋白质组学与细胞中介代谢的结合;谨慎行事!

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摘要

Metabolic transformations of malignant cells are essential to the development and progression of all cancers. The understanding of the pathogenesis and progression of cancer requires the establishment of the altered genetic/metabolic factors that are essential to the development, growth, and proliferation of the malignant cells. Recognition of this important relationship has resulted in a resurgence of interest in the intermediary metabolism of tumor cells. The role of molecular genetics and proteomics and the application of molecular technology in assessing altered cellular metabolism has become a major area of biomedical research. The contemporary generation of biomedical scientists is exceptionally well trained in all areas of molecular biology and molecular technology, which are now important tools to be applied to the regulation of cellular intermediary metabolism. Simultaneously, the didactic and methodological training associated with the principles and operation of metabolic pathways, enzymology, cellular enzyme activity, and associated biochemical implications has been diminished and often eliminated from the pre- and post-doctoral programs. Interpretations and conclusions of alterations in cellular enzyme activity and associated metabolic pathways based on genetic/proteomic changes can and will result in misrepresentation of important metabolic implications in malignancy and other diseases. It is essential that the genetic/proteomic studies be coupled to biochemical/metabolic cellular events to satisfy the axiom: "genetic transformations and proteomic alterations will have little relevancy to disease processes if the genetic/proteomic alterations are not manifested in altered and impaired cellular and metabolic function". The appropriate marriage of molecular genetics/proteomics with the regulation of cellular intermediary metabolism will provide new revelations and understanding of malignancy that could not be achieved in earlier generations.
机译:恶性细胞的代谢转化对于所有癌症的发生和发展至关重要。对癌症发病机理和进展的理解要求建立改变的遗传/代谢因素,这些因素对于恶性细胞的发育,生长和增殖至关重要。对这一重要关系的认识导致对肿瘤细胞的中间代谢的兴趣重新出现。分子遗传学和蛋白质组学的作用以及分子技术在评估改变的细胞代谢中的应用已成为生物医学研究的主要领域。当代一代的生物医学科学家在分子生物学和分子技术的所有领域都受到过良好的培训,这些领域现已成为可用于调控细胞中介代谢的重要工具。同时,与代谢途径的原理和操作,酶学,细胞酶活性以及相关的生化影响相关的教学和方法学培训已经减少,并且通常从博士前和博士后计划中删除。基于遗传/蛋白质组学变化的细胞酶活性和相关代谢途径改变的解释和结论可能会导致对恶性肿瘤和其他疾病中重要的代谢影响的错误描述。遗传/蛋白质组学研究必须与生化/代谢细胞事件相结合才能满足公理:“如果遗传/蛋白质组学改变未在改变的和受损的细胞和器官中表现出来,则遗传转化和蛋白质组学改变与疾病过程无关。代谢功能”。分子遗传学/蛋白质组学与细胞中介代谢的适当结合将提供新的启示和对恶性肿瘤的了解,这是前几代人无法实现的。

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