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Targeted sequencing of candidate gene regions for myelofibrosis in dogs

BACKGROUND: Myelofibrosis often lacks an identifiable cause in dogs. In humans, most primary myelofibrosis cases develop secondary to driver mutations in JAK2, CALR, or MPL. OBJECTIVES: To determine the prevalence of variants in JAK2, CALR, or MPL candidate regions in dogs with myelofibrosis and in...

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Autores principales: Campbell, Amelia G., Seelig, Davis M., Beckman, Joan D., Minor, Katie M., Heinrich, Daniel A., Friedenberg, Steven G., Modiano, Jaime F., Furrow, Eva
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley & Sons, Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9308436/
https://www.ncbi.nlm.nih.gov/pubmed/35815881
http://dx.doi.org/10.1111/jvim.16476
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author Campbell, Amelia G.
Seelig, Davis M.
Beckman, Joan D.
Minor, Katie M.
Heinrich, Daniel A.
Friedenberg, Steven G.
Modiano, Jaime F.
Furrow, Eva
author_facet Campbell, Amelia G.
Seelig, Davis M.
Beckman, Joan D.
Minor, Katie M.
Heinrich, Daniel A.
Friedenberg, Steven G.
Modiano, Jaime F.
Furrow, Eva
author_sort Campbell, Amelia G.
collection PubMed
description BACKGROUND: Myelofibrosis often lacks an identifiable cause in dogs. In humans, most primary myelofibrosis cases develop secondary to driver mutations in JAK2, CALR, or MPL. OBJECTIVES: To determine the prevalence of variants in JAK2, CALR, or MPL candidate regions in dogs with myelofibrosis and in healthy dogs. ANIMALS: Twenty‐six dogs with myelofibrosis that underwent bone marrow biopsy between 2010 and 2018 and 25 control dogs matched for age, sex, and breed. METHODS: Cross‐sectional study. Amplicon sequencing of JAK2 exons 12 and 14, CALR exon 9, and MPL exon 10 was performed on formalin‐fixed, decalcified, paraffin‐embedded bone marrow (myelofibrosis) or peripheral blood (control) DNA. Somatic variants were categorized as likely‐benign or possibly‐pathogenic based on predicted impact on protein function. Within the myelofibrosis group, hematologic variables and survival were compared by variant status (none, likely‐benign only, and ≥1 possibly‐pathogenic). The effect of age on variant count was analyzed using linear regression. RESULTS: Eighteen of 26 (69%) myelofibrosis cases had somatic variants, including 9 classified as possibly‐pathogenic. No somatic variants were detected in controls. Within the myelofibrosis group, hematologic variables and survival did not differ by variant status. The number of somatic variants per myelofibrosis case increased with age (estimate, 0.69; SE, 0.29; P = .03). CONCLUSIONS AND CLINICAL IMPORTANCE: Somatic variants might initiate or perpetuate myelofibrosis in dogs. Our findings suggest the occurrence of clonal hematopoiesis in dogs, with increasing incidence with age, as observed in humans.
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spelling pubmed-93084362022-07-26 Targeted sequencing of candidate gene regions for myelofibrosis in dogs Campbell, Amelia G. Seelig, Davis M. Beckman, Joan D. Minor, Katie M. Heinrich, Daniel A. Friedenberg, Steven G. Modiano, Jaime F. Furrow, Eva J Vet Intern Med SMALL ANIMAL BACKGROUND: Myelofibrosis often lacks an identifiable cause in dogs. In humans, most primary myelofibrosis cases develop secondary to driver mutations in JAK2, CALR, or MPL. OBJECTIVES: To determine the prevalence of variants in JAK2, CALR, or MPL candidate regions in dogs with myelofibrosis and in healthy dogs. ANIMALS: Twenty‐six dogs with myelofibrosis that underwent bone marrow biopsy between 2010 and 2018 and 25 control dogs matched for age, sex, and breed. METHODS: Cross‐sectional study. Amplicon sequencing of JAK2 exons 12 and 14, CALR exon 9, and MPL exon 10 was performed on formalin‐fixed, decalcified, paraffin‐embedded bone marrow (myelofibrosis) or peripheral blood (control) DNA. Somatic variants were categorized as likely‐benign or possibly‐pathogenic based on predicted impact on protein function. Within the myelofibrosis group, hematologic variables and survival were compared by variant status (none, likely‐benign only, and ≥1 possibly‐pathogenic). The effect of age on variant count was analyzed using linear regression. RESULTS: Eighteen of 26 (69%) myelofibrosis cases had somatic variants, including 9 classified as possibly‐pathogenic. No somatic variants were detected in controls. Within the myelofibrosis group, hematologic variables and survival did not differ by variant status. The number of somatic variants per myelofibrosis case increased with age (estimate, 0.69; SE, 0.29; P = .03). CONCLUSIONS AND CLINICAL IMPORTANCE: Somatic variants might initiate or perpetuate myelofibrosis in dogs. Our findings suggest the occurrence of clonal hematopoiesis in dogs, with increasing incidence with age, as observed in humans. John Wiley & Sons, Inc. 2022-07-11 2022-07 /pmc/articles/PMC9308436/ /pubmed/35815881 http://dx.doi.org/10.1111/jvim.16476 Text en © 2022 The Authors. Journal of Veterinary Internal Medicine published by Wiley Periodicals LLC on behalf of American College of Veterinary Internal Medicine. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle SMALL ANIMAL
Campbell, Amelia G.
Seelig, Davis M.
Beckman, Joan D.
Minor, Katie M.
Heinrich, Daniel A.
Friedenberg, Steven G.
Modiano, Jaime F.
Furrow, Eva
Targeted sequencing of candidate gene regions for myelofibrosis in dogs
title Targeted sequencing of candidate gene regions for myelofibrosis in dogs
title_full Targeted sequencing of candidate gene regions for myelofibrosis in dogs
title_fullStr Targeted sequencing of candidate gene regions for myelofibrosis in dogs
title_full_unstemmed Targeted sequencing of candidate gene regions for myelofibrosis in dogs
title_short Targeted sequencing of candidate gene regions for myelofibrosis in dogs
title_sort targeted sequencing of candidate gene regions for myelofibrosis in dogs
topic SMALL ANIMAL
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9308436/
https://www.ncbi.nlm.nih.gov/pubmed/35815881
http://dx.doi.org/10.1111/jvim.16476
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