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Darbro, B. W.

Publications and source records attributed to Darbro, B. W..

2 recordsLinked to original sources

Sex-dependent differences in pain and sleep in a porcine model of Neurofibromatosis type 1

Neurofibromatosis Type 1 (NF1) is an autosomal dominant genetic disorder resulting from germline mutations in the NF1 gene, which encodes neurofibromin. Patients experience a variety of symptoms, but pain in the context of NF1 remains largely underrecognized. Here, we characterize nociceptive signaling and pain behaviors in a miniswine harboring a disruptive NF1 mutation (exon 42 deletion). We explore these phenotypes in relationship to collapsin response mediator protein 2 (CRMP2), a known interactor of neurofibromin. Mechanistically, we found two previously unknown phosphorylated residues of CRMP2 in NF1+/ex42del pig dorsal root ganglia (DRGs) and replicated increased voltage-gated calcium channel currents in NF1+/ex42del pig DRGs previously described in rodent models of NF1. We present the first characterization of pain-related behaviors in a pig model of NF1, identifying unchanged agitation scores, lower tactile thresholds (allodynia), and decreased response latencies to thermal laser stimulation (hyperalgesia) in the NF1 mutant animals; NF1+/ex42del pigs demonstrated sexually dimorphic behaviors. NF1+/ex42del pigs showed reduced sleep quality and increased resting, two health-related quality of life symptoms found to be comorbid in people with NF1 pain. Finally, we show decreased depolarization-evoked calcium influx in both wildtype and NF1+/ex42del pig DRGs treated with CRMP2 phosphorylation inhibitor (5)-lacosamide. Our data supports use of NF1+/ex42del pigs as an ideal model for studying NF1-associated pain and are a better model for understanding the pathophysiology of NF1 compared to rodents. Moreover, our findings demonstrate that interfering with CRMP2 phosphorylation might be a promising therapeutic strategy for NF1-related pain management.

neuroscience

In trans variant calling reveals enrichment for compound heterozygous variants in genes involved in neuronal development and growth.

Compound heterozygotes occur when different mutations at the same locus on both maternal and paternal chromosomes produce a recessive trait. Here we present the tool VarCount for the quantification of mutations at the individual level. We used VarCount to characterize compound heterozygous coding variants in patients with epileptic encephalopathy and in the 1000 genomes participants. The Epi4k data contains variants identified by whole exome sequencing in patients with either Lennox-Gastaut Syndrome (LGS) or Infantile Spasms (IS), as well as their parents. We queried the Epi4k dataset (264 trios) and the phased 1000 genomes data (2504 participants) for recessive variants. To assess enrichment, transcript counts were compared between the Epi4k and 1000 genomes participants using minor allele frequency (MAF) cutoffs of 0.5% and 1.0%, and including all ancestries or only probands of European ancestry. In the Epi4k participants, we found enrichment for rare, compound heterozygous mutations in six genes, including three involved in neuronal growth and development - PRTG (p=0.00086, 1% MAF, combined ancestries), TNC (p=0.0221% MAF, combined ancestries), and MACF1 (p=0.0245, 0.5% MAF, EU ancestry). Due the total number of transcripts considered in these analyses, the enrichment detected was not significant after correction for multiple testing and higher powered or prospective studies are necessary to validate the candidacy of these genes. However, PRTG, TNC, and MACF1 are potential novel recessive epilepsy genes and our results highlight that compound heterozygous mutations should be considered in sporadic epilepsy.

neuroscience