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Benard, G.

Publications and source records attributed to Benard, G..

2 recordsLinked to original sources

Telomeric assemblies of Paracoccidioides genomes

Paracoccidioides is a genus of dimorphic fungal pathogens endemic to Latin America. We generated long-read de novo assemblies for 11 isolates representing four species of the brasiliensis complex (P. brasiliensis, P. americana, P. restrepiensis, P. venezuelensis) and P. lutzii. These include the first complete telomere-to-telomere assemblies for P. brasiliensis (Pb18) and P. americana (Pb03), each with five chromosomes. Comparative analyses revealed chromosomal fusion and fission events distinguishing P. brasiliensis and P. americana, and a 90 kb tandem duplication in P. americana containing siderophore biosynthesis genes (sid1, sid3, sid4), a cluster of putative virulence factors. Mitochondrial genomes showed conserved gene order but a phylogenetic topology inconsistent with the nuclear tree, suggesting mitochondrial introgression between P. lutzii and P. venezuelensis. RNA transposable elements were enriched near telomeres, correlated with genome size, and most abundant in P. lutzii. These assemblies provide key resources for understanding genome evolution and introgression in Paracoccidioides. SIGNIFICANCESpecies of Paracoccidioides cause paracoccidioidomycosis, a systemic mycosis that remains a major public health problem in Latin America. Despite their clinical importance, genome evolution across the genus is poorly understood owing to the lack of complete reference assemblies. Here, we present the first telomere-to-telomere reference genomes for P. brasiliensis and P. americana, enabling a comprehensive comparison of chromosomal structure across the genus. Our analyses reveal that the nuclear genome is highly dynamic and shaped by large-scale rearrangements and structural variants, including the duplication of a siderophore biosynthesis-related gene cluster linked to virulence. In contrast, the mitochondrial genome is structurally conserved but shows introgression between species, revealing hidden evolutionary exchange. Together, these genomic resources redefine our understanding of Paracoccidioides evolution and provide a foundation for advances in molecular diagnostics, epidemiological surveillance, and studies of fungal pathogenicity.

microbiology↗

The E3 ubiquitin ligase FBXL6 controls the quality of newly synthesized mitochondrial ribosomal proteins

The large majority of mitochondrial proteins is synthesized in the cytosol and then imported to the organelle. To ensure proper mitochondrial functions, the quality of these proteins needs to be guaranteed. Here, we show that the E3 ubiquitin ligase F-box/LRR-repeat protein 6 (FBXL6) participates to the quality of these mitochondrial proteins at the level of the cytosolic translation. We found that lack of FBXL6 has severe effects including mitochondrial ribosomal protein aggregations, altered mitochondrial metabolism and inhibited cell cycle progression in oxidative conditions. FBXL6 was found to interact specifically with ribosomal-associated quality control proteins and chaperones involved in the regulation of newly synthesized proteins and also it preferentially binds newly synthesized mitochondrial ribosomal proteins. Consistently, deletion of the RQC protein, NEMF or HSP70-family chaperone HSPA1A impedes FBXL6 interaction with its substrate. In addition, cells lacking FBXL6 display altered degradation of defective mitochondrial ribosomal protein containing C-terminal alanyl-threonyl extension.

cell biology↗