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Fassler, J. S.

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

2 recordsLinked to original sources

The Role of Polyglutamine in Inter- and Intra-molecular Interactions in Med15-dependent Regulation

Med15 is a general transcriptional regulator and member of the tail module of the RNA Pol II Mediator complex. The S. cerevisiae Med15 protein has a well-structured N-terminal KIX domain, three Activator Binding Domains (ABDs) and several naturally variable polyglutamine (poly-Q) tracts (Q1, Q2, Q3) embedded in an intrinsically disordered central region, and a C-terminal Mediator Association Domain (MAD). We investigated how the presence of ABDs and changes in length and composition of poly-Q tracts influences Med15 activity and function using phenotypic, gene expression, and transcription factor interaction assays of truncation, deletion, and synthetic alleles. We found that individual Med15 activities were influenced by the number of activator binding domains (ABDs) and adjacent polyglutamine composition. We also observed that distant glutamine tracts and Med15 phosphorylation affected the activities of the KIX domain, suggesting that intramolecular interactions may be required for KIX domain interactions with transcription factors. We conclude that robust Med15 activity required at least the Q1 tract and that the length of that tract modulates activity in a context-dependent manner. We speculate that the glutamine tract provides a degree of intramolecular flexibility that is needed for Med15 function. Finally, we found that loss of Msn2-dependent transcriptional activation in Med15 Q1 tract variants correlates well with a reduction in Msn2:Med15 interaction strength.

molecular biology↗

Parallel Expansion and Divergence of the Hyr/Iff-like (Hil) Adhesin Family in Pathogenic Yeasts Including Candida auris

Opportunistic yeast pathogens evolved multiple times in the Saccharomycetes class, including the recently emerged, multidrug-resistant Candida auris. We show that homologs of a known yeast adhesin family in Candida albicans, the Hyr/Iff-like (Hil) family, are enriched in distinct clades of Candida species as a result of multiple, independent expansions. Following gene duplication, the tandem repeat-rich region in these proteins diverged extremely rapidly and generated large variations in length and {beta}-aggregation potential, both of which were known to directly affect adhesion. The conserved N-terminal effector domain was predicted to adopt a {beta}-helical fold followed by an -crystallin domain, making it structurally similar to a group of unrelated bacterial adhesins. Nonsynonymous-to-synonymous substitution rate analysis of the effector domain in C. auris revealed relaxed selective constraint and signatures of positive selection, suggesting functional diversification after gene duplication. Lastly, we found the Hil family genes to be enriched at chromosomal ends, which likely contributed to their expansion via ectopic recombination and break-induced replication. We hypothesize that the expansion and diversification of adhesin families are a key step toward the emergence of fungal pathogens and also generate variation in adhesion and virulence within and between species.

microbiology↗