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HEM1 Actin Immunodysregulatory Disorder: Genotypes, Phenotypes, and Future Directions.


ABSTRACT: Cells of the innate and adaptive immune systems depend on proper actin dynamics to control cell behavior for effective immune responses. Dysregulated actin networks are known to play a pathogenic role in an increasing number of inborn errors of immunity. The WAVE regulatory complex (WRC) mediates branched actin polymerization, a process required for key cellular functions including migration, phagocytosis, vesicular transport, and immune synapse formation. Recent reports of pathogenic variants in NCKAP1L, a hematopoietically restricted gene encoding the HEM1 protein component of the WRC, defined a novel disease involving recurrent bacterial and viral infections, autoimmunity, and excessive inflammation (OMIM 141180). This review summarizes the diverse clinical presentations and immunological phenotypes observed in HEM1-deficient patients. In addition, we integrate the pathophysiological mechanisms described in current literature and highlight the outstanding questions for diagnosis and management of the HEM1 actin immunodysregulatory disorder.

SUBMITTER: Cook S 

PROVIDER: S-EPMC9700602 | biostudies-literature | 2022 Nov

REPOSITORIES: biostudies-literature

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HEM1 Actin Immunodysregulatory Disorder: Genotypes, Phenotypes, and Future Directions.

Cook Sarah S   Lenardo Michael J MJ   Freeman Alexandra F AF  

Journal of clinical immunology 20220722 8


Cells of the innate and adaptive immune systems depend on proper actin dynamics to control cell behavior for effective immune responses. Dysregulated actin networks are known to play a pathogenic role in an increasing number of inborn errors of immunity. The WAVE regulatory complex (WRC) mediates branched actin polymerization, a process required for key cellular functions including migration, phagocytosis, vesicular transport, and immune synapse formation. Recent reports of pathogenic variants i  ...[more]

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