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质粒DNA的核质运输:从细胞质到细胞核的危险旅程。

Nucleocytoplasmic transport of plasmid DNA: a perilous journey from the cytoplasm to the nucleus.

作者信息

Lechardeur Delphine, Lukacs Gergely L

机构信息

Hospital for Sick Children, Program in Cell and Lung Biology, Department of Biochemistry and Laboratory Medicine and Pathobiology, University of Toronto, Toronto, Ontario, M5G 1X8 Canada.

出版信息

Hum Gene Ther. 2006 Sep;17(9):882-9. doi: 10.1089/hum.2006.17.882.

Abstract

Nonviral vectors represent a promising approach for the safe delivery of therapeutic DNA in genetic and acquired human diseases. Before synthetic vector systems can be used for clinical applications, their limited efficacy must be addressed. At the cellular level, successful gene transfer is dependent on several additional factors including DNA uptake, release from the DNA-vector complex, and nucleocytoplasmic transport. This paper reviews the major metabolic and physical impediments that plasmid DNA vectorized by synthetic vectors encounters between the cytosol and the nucleus. Plasmid DNA that escapes the endolysosomal compartment encounters the diffusional and metabolic barriers of the cytoplasm, reducing the number of intact plasmids that reach the nuclear envelope. Nuclear translocation of DNA requires either the disassembly of the nuclear envelope during cell division or active nuclear transport via the nuclear pore complex. In the nucleus, plasmid DNA is relatively stable, but its transcription and its fate during cell division are still debated. A better understanding of the cellular and molecular basis of nonviral gene transfer during nucleocytoplasmic trafficking may provide strategies to overcome those obstacles that limit the efficiency of nonviral gene delivery. We review some of the current methods of gene transfer mediated by synthetic vectors, highlighting systems that exploit our actual knowledge of the nucleocytoplasmic transport of plasmid DNA.

摘要

非病毒载体是在遗传性和后天性人类疾病中安全递送治疗性DNA的一种有前景的方法。在合成载体系统可用于临床应用之前,必须解决其有限的功效问题。在细胞水平上,成功的基因转移取决于几个其他因素,包括DNA摄取、从DNA-载体复合物中释放以及核质运输。本文综述了合成载体介导的质粒DNA在细胞质和细胞核之间遇到的主要代谢和物理障碍。逃离内溶酶体区室的质粒DNA会遇到细胞质的扩散和代谢障碍,从而减少到达核膜的完整质粒数量。DNA的核转位需要在细胞分裂期间核膜的解体或通过核孔复合体的主动核运输。在细胞核中,质粒DNA相对稳定,但其转录及其在细胞分裂过程中的命运仍存在争议。更好地理解核质运输过程中非病毒基因转移的细胞和分子基础,可能会提供克服那些限制非病毒基因递送效率的障碍的策略。我们综述了一些当前由合成载体介导的基因转移方法,重点介绍了利用我们对质粒DNA核质运输的实际知识的系统。

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