Parveen Z, Krupetsky A, Engelstädter M, Cichutek K, Pomerantz R J, Dornburg R
The Dorrance H. Hamilton Laboratories, Thomas Jefferson University, Division of Infectious Diseases, Center for Human Virology, 1020 Locust Street, Suite 329, Philadelphia, PA 19107, USA.
Nat Biotechnol. 2000 Jun;18(6):623-9. doi: 10.1038/76458.
Gene therapy applications of retroviral vectors derived from C-type retroviruses have been limited to introducing genes into dividing target cells. Here, we report genetically engineered C-type retroviral vectors derived from spleen necrosis virus (SNV), which are capable of infecting nondividing cells. This has been achieved by introducing a nuclear localization signal (NLS) sequence into the matrix protein (MA) of SNV by site-directed mutagenesis. This increased the efficiency of infecting nondividing cells and was sufficient to endow the virus with the capability to efficiently infect growth-arrested human T lymphocytes and quiescent primary monocyte-derived macrophages. We demonstrate that this vector actively penetrates the nucleus of a target cell, and has potential use as a gene therapy vector to transfer genes into nondividing cells.
源自C型逆转录病毒的逆转录病毒载体的基因治疗应用一直局限于将基因导入分裂的靶细胞。在此,我们报告了源自脾坏死病毒(SNV)的基因工程C型逆转录病毒载体,其能够感染非分裂细胞。这是通过定点诱变将核定位信号(NLS)序列引入SNV的基质蛋白(MA)来实现的。这提高了感染非分裂细胞的效率,并且足以赋予病毒有效感染生长停滞的人T淋巴细胞和静止的原代单核细胞衍生巨噬细胞的能力。我们证明该载体能主动穿透靶细胞的细胞核,并且有潜力作为一种基因治疗载体将基因导入非分裂细胞。