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Published on: April 20, 2021
Ligase-4 Deficiency Causes Distinctive Immune Abnormalities in Asymptomatic Individuals
Kerstin Felgentreff1,2, Sachin N Baxi1, Yu Nee Lee1
1Division of Immunology, Boston Children's Hospital, Harvard Medical School, Boston, MA, USA.
Insights
DNA Ligase 4 (LIG4) syndrome exhibits significant clinical variability, even in asymptomatic family members. This DNA repair defect impacts immune cell development and function, highlighting the need for comprehensive genetic and immunologic assessment.
Area of Science:
- Molecular Biology
- Immunology
- Genetics
Background:
- DNA Ligase 4 (LIG4) is crucial for non-homologous end-joining (NHEJ) DNA repair, essential for V(D)J recombination and adaptive immunity.
- LIG4 deficiency causes a syndrome with growth retardation, immunodeficiency, and developmental delay.
Observation:
- A patient with LIG4 syndrome and affected siblings were studied for immune phenotype, radiosensitivity, and T/B cell receptor repertoires.
- Genetically affected individuals displayed variable radiosensitivity, altered T/B cell counts, and hypogammaglobulinemia.
Findings:
- Affected individuals showed increased reliance on microhomology-mediated end-joining (MHMEJ) repair, resulting in shorter CDR3 lengths.
- Despite altered repair pathways, overall T and B cell receptor repertoire diversity was maintained.
Implications:
- LIG4 syndrome presents with high clinical variability, even within families.
- Immunologic abnormalities can be present in individuals without overt symptoms.
- Understanding LIG4's role is vital for diagnosing and managing immunodeficiency disorders.
Purpose:
DNA Ligase 4 (LIG4) is a key factor in the non-homologous end-joining (NHEJ) DNA double-strand break repair pathway needed for V(D)J recombination and the generation of the T cell receptor and immunoglobulin molecules. Defects in LIG4 result in a variable syndrome of growth retardation, pancytopenia, combined immunodeficiency, cellular radiosensitivity, and developmental delay.
Methods:
We diagnosed a patient with LIG4 syndrome by radiosensitivity testing on peripheral blood cells, and established that two of her four healthy siblings carried the same compound heterozygous LIG4 mutations. An extensive analysis of the immune phenotype, cellular radiosensitivity, telomere length, and T and B cell antigen receptor repertoire was performed in all siblings.
Results:
In the three genotypically affected individuals, variable severities of radiosensitivity, alterations of T and B cell counts with an increased percentage of memory cells, and hypogammaglobulinemia, were noticed. Analysis of T and B cell antigen receptor repertoires demonstrated increased usage of alternative microhomology-mediated end-joining (MHMEJ) repair, leading to diminished N nucleotide addition and shorter CDR3 length. However, overall repertoire diversity was preserved.
Conclusions:
We demonstrate that LIG4 syndrome presents with high clinical variability even within the same family, and that distinctive immunologic abnormalities may be observed also in yet asymptomatic individuals.
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