Erythroid lineage-specific lentiviral RNAi vectors suitable for molecular functional studies and therapeutic applications

Author:

Bagchi Abhirup,Devaraju Nivedhitha,Chambayil Karthik,Rajendiran Vignesh,Venkatesan Vigneshwaran,Sayed Nilofer,Pai Aswin Anand,Nath Aneesha,David Ernest,Nakamura Yukio,Balasubramanian Poonkuzhali,Srivastava Alok,Thangavel Saravanabhavan,Mohankumar Kumarasamypet M.,Velayudhan Shaji R.

Abstract

AbstractNumerous genes exert multifaceted roles in hematopoiesis. Therefore, we generated novel lineage-specific RNA interference (RNAi) lentiviral vectors, H23B-Ery-Lin-shRNA and H234B-Ery-Lin-shRNA, to probe the functions of these genes in erythroid cells without affecting other hematopoietic lineages. The lineage specificity of these vectors was confirmed by transducing multiple hematopoietic cells to express a fluorescent protein. Unlike the previously reported erythroid lineage RNAi vector, our vectors were designed for cloning the short hairpin RNAs (shRNAs) for any gene, and they also provide superior knockdown of the target gene expression with a single shRNA integration per cell. High-level lineage-specific downregulation of BCL11A and ZBTB7A, two well-characterized transcriptional repressors of HBG in adult erythroid cells, was achieved with substantial induction of fetal hemoglobin with a single-copy lentiviral vector integration. Transduction of primary healthy donor CD34+ cells with these vectors resulted in >80% reduction in the target protein levels and up to 40% elevation in the γ-chain levels in the differentiated erythroid cells. Xenotransplantation of the human CD34+ cells transduced with H23B-Ery-Lin-shBCL11A LV in immunocompromised mice showed ~ 60% reduction in BCL11A protein expression with ~ 40% elevation of γ-chain levels in the erythroid cells derived from the transduced CD34+ cells. Overall, the novel erythroid lineage-specific lentiviral RNAi vectors described in this study provide a high-level knockdown of target gene expression in the erythroid cells, making them suitable for their use in gene therapy for hemoglobinopathies. Additionally, the design of these vectors also makes them ideal for high-throughput RNAi screening for studying normal and pathological erythropoiesis.

Funder

Department of Biotechnology, Ministry of Science and Technology, India

DBT Wellcome Trust India Alliance Fellowship

University Grants Commission

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Cited by 4 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Transcriptional regulators of fetal hemoglobin;Hematology, Transfusion and Cell Therapy;2024-08

2. Efficient deletion of microRNAs using CRISPR/Cas9 with dual guide RNAs;Frontiers in Molecular Biosciences;2024-04-02

3. Base editing of key residues in the BCL11A-XL-specific zinc finger domains derepresses fetal globin expression;Molecular Therapy;2024-03

4. Gene Therapy in Hematology;Comprehensive Hematology and Stem Cell Research;2024

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