Stull R A, Hyun W C, Pallavicini M G
Cancer Center, University of California, San Francisco 94143-0808, USA.
Cytometry. 2000 Jun 1;40(2):126-34.
Cell transduction with multiple genes offers opportunities to investigate specific gene interactions on cell function. Detection of multiple transduced genes in hematopoietic cells requires strategies to combine measurements of gene expression with phenotypic cell discriminants. We describe simultaneous flow cytometric detection of two green fluorescent protein (GFP) variants in immunophenotypically defined human hematopoietic subpopulations using only a minor physical adjustment to a standard FACSCalibur.
The accuracy and sensitivity of enhanced GFP (EGFP) and enhanced yellow fluorescent protein (EYFP) detection in mixtures of transduced and nontransduced PG13 packaging cells were evaluated by flow cytometry. Retroviral vectors encoding EGFP or EYFP were used to transduce CD34(+) hematopoietic cells derived from umbilical cord blood. The transduction efficiency into subpopulations of hematopoietic cells was measured using multivariate flow cytometry.
A bicistronic retroviral vector containing the EGFP and puromycin N-acetyltransferase (pac) genes afforded brighter EGFP signals in transduced cells than a retroviral vector encoding a pac-EGFP fusion protein. The sensitivity of detecting EGFP and EYFP-expressing cells among a background of nonexpressing cells was 0.01% and 0.05%, respectively. EGFP or EYFP was expressed in up to 95% of CD34(+) DR(-) or CD34(+) 38(-) subpopulations in cord blood 48 h posttransduction. Simultaneous transduction with EGFP and EYFP viral supernatants (1:1 mixture) led to coexpression of both GFP variants in 15% of CD34(+) DR(-) and 20% of CD34(+) 38(-) cells.
These results demonstrate simultaneous detection of EGFP and EYFP in immunophenotypically discriminated human hematopoietic cells. This technique will be useful to quantify transduction of multiple retroviral constructs in discriminated subpopulations.
用多个基因进行细胞转导为研究特定基因对细胞功能的相互作用提供了机会。检测造血细胞中的多个转导基因需要将基因表达测量与细胞表型判别相结合的策略。我们描述了仅对标准FACSCalibur进行微小物理调整后,在免疫表型定义的人类造血亚群中同时流式细胞术检测两种绿色荧光蛋白(GFP)变体。
通过流式细胞术评估转导和未转导的PG13包装细胞混合物中增强型GFP(EGFP)和增强型黄色荧光蛋白(EYFP)检测的准确性和灵敏度。编码EGFP或EYFP的逆转录病毒载体用于转导来自脐带血的CD34(+)造血细胞。使用多参数流式细胞术测量造血细胞亚群的转导效率。
与编码嘌呤霉素N-乙酰转移酶(pac)-EGFP融合蛋白的逆转录病毒载体相比,含有EGFP和嘌呤霉素N-乙酰转移酶(pac)基因的双顺反子逆转录病毒载体在转导细胞中产生更亮的EGFP信号。在不表达细胞背景中检测表达EGFP和EYFP细胞的灵敏度分别为0.01%和0.05%。转导后48小时,脐血中高达95%的CD34(+)DR(-)或CD34(+)38(-)亚群表达EGFP或EYFP。用EGFP和EYFP病毒上清液(1:1混合物)同时转导导致15%的CD34(+)DR(-)细胞和20%的CD34(+)38(-)细胞共表达两种GFP变体。
这些结果证明了在免疫表型区分的人类造血细胞中同时检测EGFP和EYFP。该技术将有助于定量区分亚群中多个逆转录病毒构建体的转导。