Davis James R, Kakar Mudit, Lim Carol S
Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, Salt Lake City, Utah 84108, USA.
Pharm Res. 2007 Jan;24(1):17-27. doi: 10.1007/s11095-006-9133-z. Epub 2006 Sep 13.
Over the past decade, considerable progress has been made to improve our understanding of the intracellular transport of proteins. Mechanisms of nuclear import and export involving classical receptors have been studied. Signal sequences required for directing a protein molecule to a specific cellular compartment have been defined. Knowledge of subcellular trafficking of proteins has also increased our understanding of diseases caused due to mislocalization of proteins. A specific protein on deviating from its native cellular compartment may result in disease due to loss of its normal functioning and aberrant activity in the "wrong" compartment. Mislocalization of proteins results in diseases that range from metabolic disorders to cancer. In this review we discuss some of the diseases caused due to mislocalization. We further focus on application of nucleocytoplasmic transport to drug delivery. Various rationales to treat diseases by exploiting intracellular transport machinery have been proposed. Although the pathways for intracellular movement of proteins have been defined, these have not been adequately utilized for management of diseases involving mislocalized proteins. This review stresses the need for designing drug delivery systems utilizing these mechanisms as this area is least exploited but offers great potential.
在过去十年中,我们对蛋白质细胞内运输的理解取得了长足进展。涉及经典受体的核输入和输出机制已得到研究。已确定将蛋白质分子导向特定细胞区室所需的信号序列。对蛋白质亚细胞运输的了解也增进了我们对因蛋白质定位错误而导致的疾病的认识。一种特定蛋白质偏离其天然细胞区室可能会因失去其正常功能以及在“错误”区室中的异常活性而导致疾病。蛋白质定位错误会引发从代谢紊乱到癌症等一系列疾病。在本综述中,我们讨论了一些因定位错误导致的疾病。我们进一步关注核质运输在药物递送中的应用。已经提出了利用细胞内运输机制治疗疾病的各种基本原理。尽管蛋白质细胞内移动的途径已被确定,但这些途径尚未充分用于治疗涉及定位错误蛋白质的疾病。本综述强调需要利用这些机制设计药物递送系统,因为这一领域尚未得到充分开发,但具有巨大潜力。