技术资料
-
文献Moreau-Gaudry F et al. (NOV 2001) Blood 98 9 2664--72
High-level erythroid-specific gene expression in primary human and murine hematopoietic cells with self-inactivating lentiviral vectors.
Use of oncoretroviral vectors in gene therapy for hemoglobinopathies has been impeded by low titer vectors,genetic instability,and poor expression. Fifteen self- inactivating (SIN) lentiviral vectors using 4 erythroid promoters in combination with 4 erythroid enhancers with or without the woodchuck hepatitis virus postregulatory element (WPRE) were generated using the enhanced green fluorescent protein as a reporter gene. Vectors with high erythroid-specific expression in cell lines were tested in primary human CD34(+) cells and in vivo in the murine bone marrow (BM) transplantation model. Vectors containing the ankyrin-1 promoter showed high-level expression and stable proviral transmission. Two vectors containing the ankyrin-1 promoter and 2 erythroid enhancers (HS-40 plus GATA-1 or HS-40 plus 5-aminolevulinate synthase intron 8 [I8] enhancers) and WPRE expressed at levels higher than the HS2/beta-promoter vector in bulk unilineage erythroid cultures and individual erythroid blast-forming units derived from human BM CD34(+) cells. Sca1(+)/lineage(-) Ly5.1 mouse hematopoietic cells,transduced with these 2 ankyrin-1 promoter vectors,were injected into lethally irradiated Ly5.2 recipients. Eleven weeks after transplantation,high-level expression was seen from both vectors in blood (63%-89% of red blood cells) and erythroid cells in BM (70%-86% engraftment),compared with negligible expression in myeloid and lymphoid lineages in blood,BM,spleen,and thymus (0%-4%). The I8/HS-40-containing vector encoding a hybrid human beta/gamma-globin gene led to 43% to 113% human gamma-globin expression/copy of the mouse alpha-globin gene. Thus,modular use of erythroid-specific enhancers/promoters and WPRE in SIN-lentiviral vectors led to identification of high-titer,stably transmitted vectors with high-level erythroid-specific expression for gene therapy of red cell diseases. View Publication -
文献Seshasayee D et al. (JUL 2000) The Journal of biological chemistry 275 30 22969--77
Intron 1 elements promote erythroid-specific GATA-1 gene expression.
The zinc finger protein GATA-1 functions in a concentration-dependent fashion to activate the transcription of erythroid and megakaryocytic genes. Less is understood,however,regarding factors that regulate the GATA-1 gene. Presently elements within intron 1 are shown to markedly affect its erythroid-restricted transcription. Within a full-length 6. 8-kilobase GATA-1 gene construct (G6.8-Luc) the deletion of a central subdomain of intron 1 inhibited transcription textgreater/=10-fold in transiently transfected erythroid SKT6 cells,and likewise inhibited high-level transcription in erythroid FDCW2ER-GATA1 cells. In parental myeloid FDCER cells,however,low-level transcription was largely unaffected by intron 1 deletions. Within intron 1,repeated GATA and Ap1 consensus elements in a central region are described which when linked directly to reporter cassettes promote transcription in erythroid SKT6 and FDCER-GATA1 cells at high rates. Moreover,GATA-1 activated transcription from this subdomain in 293 cells,and in SKT6 cells this subdomain footprinted in vivo. For stably integrated GFP reporter constructs in erythroid SKT6 cells,corroborating results were obtained. Deletion of intronic GATA and Ap1 motifs abrogated the activity of G6.8-pEGFP; activity was decreased by 43 and 56%,respectively,by the deletion of either motif; and the above 1800-base pair region of intron 1 per se was transcribed at rates uniformly greater than G6.8-pEGFP. Also described is the differential utilization of exons 1a and 1b among primary erythromegakaryocytic and myeloid cells. View Publication -
文献Donahue RE et al. (JAN 2000) Blood 95 2 445--52
High levels of lymphoid expression of enhanced green fluorescent protein in nonhuman primates transplanted with cytokine-mobilized peripheral blood CD34(+) cells.
We have used a murine retrovirus vector containing an enhanced green fluorescent protein complimentary DNA (EGFP cDNA) to dynamically follow vector-expressing cells in the peripheral blood (PB) of transplanted rhesus macaques. Cytokine mobilized CD34(+) cells were transduced with an amphotropic vector that expressed EGFP and a dihydrofolate reductase cDNA under control of the murine stem cell virus promoter. The transduction protocol used the CH-296 recombinant human fibronectin fragment and relatively high concentrations of the flt-3 ligand and stem cell factor. Following transplantation of the transduced cells,up to 55% EGFP-expressing granulocytes were obtained in the peripheral circulation during the early posttransplant period. This level of myeloid marking,however,decreased to 0.1% or lower within 2 weeks. In contrast,EGFP expression in PB lymphocytes rose from 2%-5% shortly following transplantation to 10% or greater by week 5. After 10 weeks,the level of expression in PB lymphocytes continued to remain at 3%-5% as measured by both flow cytometry and Southern blot analysis,and EGFP expression was observed in CD4(+),CD8(+),CD20(+),and CD16/56(+) lymphocyte subsets. EGFP expression was only transiently detected in red blood cells and platelets soon after transplantation. Such sustained levels of lymphocyte marking may be therapeutic in a number of human gene therapy applications that require targeting of the lymphoid compartment. The transient appearance of EGFP(+) myeloid cells suggests that transduction of a lineage-restricted myeloid progenitor capable of short-term engraftment was obtained with this protocol. (Blood. 2000;95:445-452) View Publication
过滤器
筛选结果
类别
- 产品说明
Show More
Show Less
研究领域
- 上皮细胞研究 1 项目
- 免疫 18 项目
- 干细胞生物学 88 项目
- 癌症 50 项目
- 移植研究 4 项目
- 细胞系制备 1 项目
- 药物发现和毒理检测 16 项目
- 血管生成细胞研究 4 项目
Show More
Show Less
产品系列
细胞类型
- B 细胞 224 项目
- CD4+ 141 项目
- CD8+ 109 项目
- CHO细胞 18 项目
- HUVEC细胞(人脐静脉内皮细胞) 1 项目
- NK 细胞 162 项目
- PSC衍生 177 项目
- T 细胞 465 项目
- 上皮细胞 121 项目
- 中胚层 22 项目
- 乳腺细胞 101 项目
- 先天性淋巴细胞 37 项目
- 全血 6 项目
- 其他子集 20 项目
- 其他细胞系 6 项目
- 内皮细胞 17 项目
- 内皮集落形成细胞(ECFCs) 3 项目
- 内胚层 20 项目
- 前列腺细胞 19 项目
- 多巴胺能神经元 5 项目
- 多能干细胞 1950 项目
- 小胶质细胞 3 项目
- 巨噬细胞 31 项目
- 巨核细胞 9 项目
- 心肌细胞 35 项目
- 成骨细胞 6 项目
- 星形胶质细胞 4 项目
- 杂交瘤细胞 96 项目
- 树突状细胞(DCs) 125 项目
- 气道细胞 84 项目
- 淋巴细胞 72 项目
- 癌细胞和细胞系 139 项目
- 白细胞 9 项目
- 白细胞单采样本 11 项目
- 白血病/淋巴瘤细胞 14 项目
- 监管 57 项目
- 真皮细胞 2 项目
- 神经元 182 项目
- 神经干/祖细胞 465 项目
- 神经细胞 112 项目
- 粒细胞及其亚群 100 项目
- 红系细胞 11 项目
- 红细胞 12 项目
- 肌源干/祖细胞 10 项目
- 肝细胞 36 项目
- 肠道细胞 75 项目
- 肾脏细胞 6 项目
- 肿瘤细胞 12 项目
- 胰腺细胞 16 项目
- 脂肪细胞 6 项目
- 脑肿瘤干细胞 97 项目
- 血小板 4 项目
- 血浆 15 项目
- 血管生成细胞 3 项目
- 调节性细胞 11 项目
- 软骨细胞 7 项目
- 造血干祖细胞 959 项目
- 造血细胞 23 项目
- 间充质基质细胞 14 项目
- 间充质干祖细胞 195 项目
- 间充质细胞 19 项目
- 骨髓基质细胞 2 项目
- 骨髓瘤细胞 5 项目
- 髓系细胞 142 项目
- 鼠胚胎成纤维细胞 1 项目
Show More
Show Less