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Taliaferro, J. M.

Publications and source records attributed to Taliaferro, J. M..

2 recordsLinked to original sources

Gene-diet interactions: dietary rescue of metabolic defects in spen-depleted Drosophila

Obesity and its co-morbidities are a growing health epidemic. Interactions between genetic background and the environment and behavior (i.e. diet) greatly influence organismal energy balance. Previously, we described obesogenic mutations in the gene Split ends (Spen) in Drosophila melanogaster, and roles for Spen in fat storage and metabolic state. In Spen-deficient storage cells lipid catabolism is impaired, accompanied by a compensatory increase in glycolytic flux and protein catabolism. Here we investigate gene-diet interactions to determine if diets supplemented with specific macronutrients can rescue metabolic dysfunction in Spen-depleted animals. We show that a high-yeast diet partially rescues adiposity and developmental defects. High sugar partially improves developmental timing as well as adult longevity. Gene-diet interactions were heavily influenced by developmental-stage-specific organismal needs: extra yeast provides benefits early in development (larval stages) but becomes detrimental in adulthood. High sugar confers benefits at both larval and adult stages, with the caveat of increased adiposity. A high-fat diet is detrimental according to all tested criteria, regardless of genotype. Whereas Spen depletion influenced phenotypic responses to supplemented diets, diet was the dominant factor in directing the whole-organism steady-state metabolome. Obesity is a complex disease of genetic, environmental, and behavioral inputs. Our results show that diet customization can ameloriate metabolic dysfunction underpinned by a genetic factor.

genetics

SRPK3 regulates alternative pre-mRNA splicing required for B lymphocyte development and humoral responsiveness

Alternative splicing (AS) of pre-mRNA is a critical component of transcriptional regulation that diversifies the cellular proteome. The Serine-Arginine Protein Kinases (SRPK) initiate early events in AS. Using conditional knockout mice (cKO), we demonstrated the importance of the X-linked gene Srpk3 in B lymphocyte development and in response to immunization in vivo. Significantly decreased numbers of immature and mature B cells were observed in Srpk3-cKO BM relative to wild-type (WT). Immunization of Srpk3-cKO mice with a T lymphocyte-independent type-2 antigen elicited greatly reduced amounts of specific IgG3. Srpk3 deletion resulted in hundreds of differentially spliced mRNAs in B cells, including mRNAs encoding proteins associated with signaling pathways and mitochondrial function. Several alternative splicing outcomes in Srpk3-cKO cells are due to altered splicing regulation of SR proteins. We conclude that Srpk3 is an immunomodulatory kinase that controls humoral immunity via its regulation of pre-mRNA splicing, antibody production, and metabolism in B cells.\n\nOne Sentence SummarySRPK3 regulates alternative splicing of pre-mRNA that is crucial for B cell development, activation and antibody responses.

immunology