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Published on: November 26, 2018
Clinical and Immunological Features of Human BCL10 Deficiency
Blanca Garcia-Solis1,2,3, Ana Van Den Rym1,2,3, Jareb J Pérez-Caraballo4,5
1Laboratory of Immunogenetics of Human Diseases, IdiPAZ Institute for Health Research, La Paz Hospital, Madrid, Spain.
Insights
Bcl-10 deficiency impairs immune responses, leading to severe infections. Hematopoietic stem-cell transplantation (HSCT) offers a cure for this rare genetic disorder.
Area of Science:
- Immunology
- Genetics
- Cell Biology
Background:
- The CARD-BCL10-MALT1 (CBM) complex is crucial for human immune responses.
- Deficiencies in CARD9, CARD11, and MALT1 are well-documented, but BCL10 deficiency remains poorly understood due to limited patient data.
Observation:
- A novel patient with autosomal recessive complete BCL10 deficiency (K63X mutation) was studied.
- Mass cytometry and machine learning analyzed leukocyte populations in the patient.
- The patient experienced recurrent respiratory infections and had a family history of severe infectious diseases.
Findings:
- BCL10 deficiency resulted in a near absence of memory B and T cells.
- Significant reductions were observed in NK, γδT, Tregs, and T follicular helper (TFH) cells.
- The patient's condition was successfully treated with hematopoietic stem-cell transplantation (HSCT).
Implications:
- This study expands the understanding of BCL10 deficiency's immunological consequences.
- Early genetic diagnosis is vital for managing BCL10-deficient patients.
- HSCT is a potentially curative treatment for BCL10 deficiency, improving patient outcomes.
Abstract:
The CARD-BCL10-MALT1 (CBM) complex is critical for the proper assembly of human immune responses. The clinical and immunological consequences of deficiencies in some of its components such as CARD9, CARD11, and MALT1 have been elucidated in detail. However, the scarcity of BCL10 deficient patients has prevented gaining detailed knowledge about this genetic disease. Only two patients with BCL10 deficiency have been reported to date. Here we provide an in-depth description of an additional patient with autosomal recessive complete BCL10 deficiency caused by a nonsense mutation that leads to a loss of expression (K63X). Using mass cytometry coupled with unsupervised clustering and machine learning computational methods, we obtained a thorough characterization of the consequences of BCL10 deficiency in different populations of leukocytes. We showed that in addition to the near absence of memory B and T cells previously reported, this patient displays a reduction in NK, γδT, Tregs, and TFH cells. The patient had recurrent respiratory infections since early childhood, and showed a family history of lethal severe infectious diseases. Fortunately, hematopoietic stem-cell transplantation (HSCT) cured her. Overall, this report highlights the importance of early genetic diagnosis for the management of BCL10 deficient patients and HSCT as the recommended treatment to cure this disease.
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