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The ubiquitin system: pathogenesis of human diseases and drug targeting

机译:泛素系统:人类疾病的发病机制和药物靶向

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With the many processes and substrates targeted by the ubiquitin pathway, it is not surprising to find that aberrations in the system underlie, directly or indirectly, the pathogenesis of many diseases. While inactivation of a major enzyme such as El is obviously lethal, mutations in enzymes or in recognition motifs in substrates that do not affect vital pathways or that affect the involved process only partially may result in a broad array of phenotypes. Likewise, acquired changes in the activity of the system can also evolve into certain pathologies. The pathological states associated with the ubiquitin system can be classified into two groups: (a) those that result from loss of function-mutation in a ubiquitin system enzyme or in the recognition motif ill the target substrate that lead to stabilization of certain proteins. and (b) those that result from gain of function-abnormal or accelerated degradation of the protein target. Studies that employ targeted inactivation of genes coding for specific ubiquitin system enzymes and substrates in animals can provide a more systematic view into the broad spectrum of pathologies that may result from aberrations in ubiquitin-mediated proteolysis. Better understanding of the processes and identification of the components involved in the degradation of key regulatory proteins will lead to the development of mechanism-based drugs that will target specifically only the involved proteins. (C) 2004 Elsevier B.V. All rights reserved.
机译:在遍在蛋白途径靶向许多过程和底物的情况下,发现系统中的畸变直接或间接成为许多疾病的发病机理的基础并不奇怪。虽然主要酶(例如El)的失活显然是致命的,但不影响生命途径或仅部分影响所涉及过程的底物中酶或识别基序的突变可能会导致多种表型。同样,系统活动中获得的更改也可能演变成某些病理。与遍在蛋白系统相关的病理状态可分为两类:(a)因遍在蛋白系统酶或识别基序中的功能突变丧失而导致的目标状态,从而导致某些蛋白质稳定化。 (b)因获得蛋白质靶标的功能异常或加速降解而产生的蛋白。利用针对动物中编码特定泛素系统酶和底物的基因进行靶向灭活的研究,可以提供更系统的视野,了解泛素介导的蛋白水解异常可能导致的多种病理。更好地了解关键调节蛋白降解过程中所涉及的过程并确定其成分,将导致基于机制的药物的开发,该药物将仅针对所涉及的蛋白质。 (C)2004 Elsevier B.V.保留所有权利。

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