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Potter, S. J.

Publications and source records attributed to Potter, S. J..

2 recordsLinked to original sources

KMT2D regulates thymic egress by modulating maturation and integrin expression

ObjectiveThere is a clinical need to understand how dysregulated thymocyte development, caused by pathogenic variants in the gene encoding the histone-modifying enzyme, lysine methyltransferase 2D (KMT2D), contributes to immune dysfunction, including immune deficiency, autoimmunity, and lymphoproliferative sequela, and immune-driven mortality in individuals with Kabuki syndrome type 1 (KS1). MethodsWe studied peripheral T cells and thymocytes in both individuals with KS1 and murine constitutive and conditional targeted Kmt2d in T cells and hematopoietic lineages. KMT2D target genes, identified by RNA-sequencing of murine Kmt2d-knockout single-positive thymocytes, were validated with H3K4me3 ChIP-PCR and flow cytometry. ResultsRecent thymic emigrant (RTE) and naive T cells were reduced, and memory and double-negative (DN)-T cells were expanded in human KS1 and murine models. Kmt2d loss led to Mature 1 CD8+-single positive (SP) thymocyte accumulation and a decrease in SP thymocyte egress licensing expression (normally associated with the Mature 2 phenotype). Splenomegaly is associated with hematopoietic-driven Kmt2d loss and brings to light potential overlapping phenotypes with lymphoproliferative syndromes. Finally, we identified a KMT2D-regulated cluster of integrins which likely mediates aspects of the T cell egression. ConclusionsSingle-positive thymocyte populations deficient in Kmt2d display less integrin, less maturation, and less egress licensing gene expression; thereby, altering the downstream peripheral T cell composition that contribute to the observed KS1-associated immune deficiency. T cell intrinsic Kmt2d loss increases the percentage of peripheral DNT cells potentially through dysregulated apoptotic signaling, while hematopoietic-driven Kmt2d loss predisposes to splenomegaly; therefore, loss of Kmt2d recapitulates several distinct features of lymphoproliferative syndromes.

immunology↗

Cdc42 activity in Sertoli cells is essential for maintenance of spermatogenesis

Sertoli cells are highly polarized testicular supporting cells that simultaneously nurture progressively maturing germ cells. Proper localization of polarity protein complexes within Sertoli cells, including those responsible for blood-testis barrier formation, are vital for successful spermatogenesis. However, the mechanisms and developmental timing that underlie the establishment of polarity are poorly understood. To investigate this aspect of testicular function, we conditionally deleted Cdc42, encoding a Rho GTPase involved in regulating cell polarity, specifically in Sertoli cells. Cdc42 deletion disrupted adult Sertoli cell maturation and localization of polarity proteins, but did not affect fetal and early postnatal testicular development, nor the onset of the first wave of spermatogenesis. By early adulthood, however, conditional knockout males exhibited a loss of spermatogenic cells, resulting in a complete lack of sperm. These findings demonstrate that Cdc42 plays an essential role in establishing adult Sertoli cell polarity and, thus, maintaining steady-state spermatogenesis and healthy sperm production.

developmental biology↗