转座酶
嵌合抗原受体
转座因子
睡美人转座系统
生物
换位(逻辑)
质粒
分子生物学
抗原
遗传学
DNA
T细胞
基因组
基因
计算机科学
免疫系统
人工智能
作者
Zeming Jin,Sourindra N. Maiti,Helen Huls,Harjeet Singh,Simon Olivares,Lajos Mátés,Zsuzsanna Izsvák,Zoltán Ivics,Dean A. Lee,Richard E. Champlin,Laurence J.N. Cooper
出处
期刊:Gene Therapy
[Springer Nature]
日期:2011-03-31
卷期号:18 (9): 849-856
被引量:102
摘要
Sleeping Beauty (SB3) transposon and transposase constitute a DNA plasmid system used for therapeutic human cell genetic engineering. Here we report a comparison of SB100X, a newly developed hyperactive SB transposase, to a previous generation SB11 transposase to achieve stable expression of a CD19-specific chimeric antigen receptor (CAR3) in primary human T cells. The electro-transfer of SB100X expressed from a DNA plasmid or as an introduced mRNA species had superior transposase activity in T cells based on the measurement of excision circles released after transposition and emergence of CAR expression on T cells selectively propagated upon CD19+ artificial antigen-presenting cells. Given that T cells modified with SB100X and SB11 integrate on average one copy of the CAR transposon in each T-cell genome, the improved transposition mediated by SB100X apparently leads to an augmented founder effect of electroporated T cells with durable integration of CAR. In aggregate, SB100X improves SB transposition in primary human T cells and can be titrated with an SB transposon plasmid to improve the generation of CD19-specific CAR+ T cells.
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