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Jurek, A. M.

Publications and source records attributed to Jurek, A. M..

2 recordsLinked to original sources

A Sensitized ENU Mutagenesis Screen for Thrombosis Modifiers Identifies Suppressor Variants in Non-mutagenized Parental Generations Due to Antithrombotic Selective Pressures

Thrombosis is a leading cause of morbidity and mortality. We used a mouse forward genetic ENU screen to identify genomic variants that suppress F5L/L Tfpi+/- lethal thrombosis. Surviving F5L/L Tfpi+/- mice from our Modifier of Factor 5 Leiden 16 (MF5L16) ENU line were subjected to whole-genome sequencing analysis. This revealed that instead of an ENU-induced mutation, four mutations introduced from our F5L/L breeding stock were responsible for survival, which we named sMF5L1-4 for spontaneous Modifier of Factor 5 Leiden. In our colony, F5L/L female breeders carrying all four sMF5L mutations produced more litters and offspring than breeders with three or fewer mutations (p<0.006). Genotyping of 13 additional MF5L lines demonstrated that the four sMF5L mutations were present in all lines and were consistently associated with survival. Of these four mutations, a single G to A intergenic variant on Chromosome 18 (Chr18A, sMF5L4), was most significantly associated with survival (p=0.003), with [~]15% penetrance for conferring the survival phenotype. Furthermore, platelet aggregation was significantly reduced in Chr18A mice, suggesting an additional mechanism by which Chr18A could suppress lethal thrombosis. Comparative transcriptomics analysis of livers from Chr18A mice versus wildtype littermate controls revealed a small number of differentially expressed genes both known and unknown to affect thrombosis. In summary, we have identified four variants exerting a significant selective breeding advantage along with antithrombotic effects. Superimposing our mutagenesis screen on a selective background illustrates the interplay of natural strain background variants and de novo ENU mutations in suppressing F5L/L Tfpi+/- lethal thrombosis.

genetics↗

Identification of Regulatory Loci for Megakaryocyte and Hepatocyte Coagulation Factor V Expression in Mice

BackgroundFactor V (FV) plays a central role in the coagulation cascade, acting in both a procoagulant and anticoagulant manner. The majority of FV is produced by the liver hepatocytes. In humans, FV is endocytosed by megakaryocytes, whereas in mice, FV is synthesized by megakaryocytes. Little is known about the genomic factors regulating FV transcription in humans and mice. ObjectiveTo investigate genomic regulatory mechanisms for coagulation FV levels in the hepatocytes and megakaryocytes of inbred mice. MethodsPlasma and platelet FV levels were measured via ELISA in 5 mouse strains. A cross between the CAST/EiJ and DBA/2J strains was performed to generate 146 genetically informative F2 mice for analysis of circulating and platelet FV. Plasma and platelet FV levels were measured by ELISA for the F2 mice and whole genome genotyping for each F2 was performed using the TransnetYX MiniMUGA genotyping array. The genotyping and phenotyping data collected from these mice were then analyzed using quantitative trait loci (QTL) analysis. Results and ConclusionsWe identified one significant locus controlling plasma FV levels on Chromosome 1, [~]57.7 million base pairs upstream of the FV structural gene. We also identified a significant QTL for platelets on Chromosome 14 when sex was included as an interactive covariate, with additional suggestive loci present on Chromosomes 15 and 2. Our findings provide foundational information regarding the cell-type and sex-specific control of FV expression, establishing the basis for further investigations aimed at fine-mapping these loci and understanding how FV expression is regulated. EssentialsO_LICoagulation Factor V (FV, gene name F5) is primarily expressed in hepatocytes in humans but in hepatocytes and megakaryocyte/platelets in mice. C_LIO_LIPlasma and megakaryocyte/platelet F5 expression varies significantly between inbred mouse strains. C_LIO_LIWe identified significant loci controlling plasma and platelet F5 expression in mice. Platelet F5 expression is influenced by biological sex. C_LI

genetics↗