Javascript must be enabled to continue!
Genetically corrected RAG2 -SCID human hematopoietic stem cells restore V(D)J-recombinase and rescue lymphoid deficiency
View through CrossRef
Abstract
Recombination-activating genes (RAG1 and RAG2) are critical for lymphoid cell development and function by initiating the variable (V), diversity (D), and joining (J) (V(D)J)-recombination process to generate polyclonal lymphocytes with broad antigen specificity. The clinical manifestations of defective RAG1/2 genes range from immune dysregulation to severe combined immunodeficiencies (SCIDs), causing life-threatening infections and death early in life without hematopoietic cell transplantation (HCT). Despite improvements, haploidentical HCT without myeloablative conditioning carries a high risk of graft failure and incomplete immune reconstitution. The RAG complex is only expressed during the G0-G1 phase of the cell cycle in the early stages of T- and B-cell development, underscoring that a direct gene correction might capture the precise temporal expression of the endogenous gene. Here, we report a feasibility study using the CRISPR/Cas9-based “universal gene-correction” approach for the RAG2 locus in human hematopoietic stem/progenitor cells (HSPCs) from healthy donors and RAG2-SCID patient. V(D)J-recombinase activity was restored after gene correction of RAG2-SCID-derived HSPCs, resulting in the development of T-cell receptor (TCR) αβ and γδ CD3+ cells and single-positive CD4+ and CD8+ lymphocytes. TCR repertoire analysis indicated a normal distribution of CDR3 length and preserved usage of the distal TRAV genes. We confirmed the in vivo rescue of B-cell development with normal immunoglobulin M surface expression and a significant decrease in CD56bright natural killer cells. Together, we provide specificity, toxicity, and efficacy data supporting the development of a gene-correction therapy to benefit RAG2-deficient patients.
American Society of Hematology
Mara Pavel-Dinu
Cameron L. Gardner
Yusuke Nakauchi
Tomoki Kawai
Ottavia M. Delmonte
Boaz Palterer
Marita Bosticardo
Francesca Pala
Sebastien Viel
Harry L. Malech
Hana Y. Ghanim
Nicole M. Bode
Gavin L. Kurgan
Angela M. Detweiler
Christopher A. Vakulskas
Norma F. Neff
Adam Sheikali
Sherah T. Menezes
Jade Chrobok
Elaine M. Hernández González
Ravindra Majeti
Luigi D. Notarangelo
Matthew H. Porteus
Title: Genetically corrected
RAG2
-SCID human hematopoietic stem cells restore V(D)J-recombinase and rescue lymphoid deficiency
Description:
Abstract
Recombination-activating genes (RAG1 and RAG2) are critical for lymphoid cell development and function by initiating the variable (V), diversity (D), and joining (J) (V(D)J)-recombination process to generate polyclonal lymphocytes with broad antigen specificity.
The clinical manifestations of defective RAG1/2 genes range from immune dysregulation to severe combined immunodeficiencies (SCIDs), causing life-threatening infections and death early in life without hematopoietic cell transplantation (HCT).
Despite improvements, haploidentical HCT without myeloablative conditioning carries a high risk of graft failure and incomplete immune reconstitution.
The RAG complex is only expressed during the G0-G1 phase of the cell cycle in the early stages of T- and B-cell development, underscoring that a direct gene correction might capture the precise temporal expression of the endogenous gene.
Here, we report a feasibility study using the CRISPR/Cas9-based “universal gene-correction” approach for the RAG2 locus in human hematopoietic stem/progenitor cells (HSPCs) from healthy donors and RAG2-SCID patient.
V(D)J-recombinase activity was restored after gene correction of RAG2-SCID-derived HSPCs, resulting in the development of T-cell receptor (TCR) αβ and γδ CD3+ cells and single-positive CD4+ and CD8+ lymphocytes.
TCR repertoire analysis indicated a normal distribution of CDR3 length and preserved usage of the distal TRAV genes.
We confirmed the in vivo rescue of B-cell development with normal immunoglobulin M surface expression and a significant decrease in CD56bright natural killer cells.
Together, we provide specificity, toxicity, and efficacy data supporting the development of a gene-correction therapy to benefit RAG2-deficient patients.
Related Results
Genetically Corrected
RAG2
-SCID Human Hematopoietic Stem Cells Restore V(D)J-Recombinase and Rescue Lymphoid Deficiency
Genetically Corrected
RAG2
-SCID Human Hematopoietic Stem Cells Restore V(D)J-Recombinase and Rescue Lymphoid Deficiency
ABSTRACT
Recombination-activating genes (
RAG1
and
RAG2
) are critical in...
Stem cells
Stem cells
What is a stem cell? The term is a combination of ‘cell’ and ‘stem’. A cell is a major category of living thing, while a stem is a site of growth and support for something else. In...
Self-Renewal and BM Niche Occupancy Defects In NHEJ Deficient HSCs.
Self-Renewal and BM Niche Occupancy Defects In NHEJ Deficient HSCs.
Abstract
Abstract 1455
Maintenance of hematopoietic stem cells (HSC) requires proper interaction between HSC and the bone marrow niche. DNA repair pro...
Unexpected Rearrangement and Expression of the Immunoglobulin λ1 Locus in Scid Mice
Unexpected Rearrangement and Expression of the Immunoglobulin λ1 Locus in Scid Mice
In severe combined immunodeficient (scid) mice, V(D)J recombination is severely impaired due to a recessive mutation (scid). Thus, we were surprised to find in this study that Vλ1–...
Antibody Dependent Cellular Cytotoxicity (ADCC) Augmentation of Immunotoxin Activity in SCID-HSB-2 Mice Is Adoptively Transferable to NOD/SCID-HSB-2 Mice.
Antibody Dependent Cellular Cytotoxicity (ADCC) Augmentation of Immunotoxin Activity in SCID-HSB-2 Mice Is Adoptively Transferable to NOD/SCID-HSB-2 Mice.
Abstract
The anti-CD7 immunotoxin HB2-SAPORIN has significant therapeutic activity in the SCID-HSB-2 model of human T-ALL (Morland et al 1994 Br J Cancer 69, 279). I...
Severe Combined Immune Deficiency- An Ayurvedic Aspect with reference to Anuvanshik Vyadhi and Oja Kshaya
Severe Combined Immune Deficiency- An Ayurvedic Aspect with reference to Anuvanshik Vyadhi and Oja Kshaya
The bubble boy disease is also known as SCID (Severe Combined Immune Deficiency) is a very rare genetic disorder, affects approximately 50-100 children in the United States every y...
Atypical SCID with RAG2 Mutation: A New Case Report
Atypical SCID with RAG2 Mutation: A New Case Report
Introduction
RAG1 and RAG2 proteins initiate the V(D)J recombination process, enabling the generation of T and B lymphocytes with a diverse repertoire of antigen-...
Donor-Derived Unlicensed NK Cells Promote the Hematopoietic Recovery after Allogeneic Hematopoietic Stem Cell Transplantation
Donor-Derived Unlicensed NK Cells Promote the Hematopoietic Recovery after Allogeneic Hematopoietic Stem Cell Transplantation
Introduction
Allogeneic hematopoietic stem cell transplantation (allo-HSCT) is an effective therapy for hematopoietic malignancies. Successful engraftment of hema...

