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Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System

Cln3(Δex7/8) mice harbor the most common genetic defect causing juvenile neuronal ceroid lipofuscinosis (JNCL), an autosomal recessive disease involving seizures, visual, motor and cognitive decline, and premature death. Here, to more thoroughly investigate the manifestations of the common JNCL muta...

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Autores principales: Staropoli, John F., Haliw, Larissa, Biswas, Sunita, Garrett, Lillian, Hölter, Sabine M., Becker, Lore, Skosyrski, Sergej, Da Silva-Buttkus, Patricia, Calzada-Wack, Julia, Neff, Frauke, Rathkolb, Birgit, Rozman, Jan, Schrewe, Anja, Adler, Thure, Puk, Oliver, Sun, Minxuan, Favor, Jack, Racz, Ildikó, Bekeredjian, Raffi, Busch, Dirk H., Graw, Jochen, Klingenspor, Martin, Klopstock, Thomas, Wolf, Eckhard, Wurst, Wolfgang, Zimmer, Andreas, Lopez, Edith, Harati, Hayat, Hill, Eric, Krause, Daniela S., Guide, Jolene, Dragileva, Ella, Gale, Evan, Wheeler, Vanessa C., Boustany, Rose-Mary, Brown, Diane E., Breton, Sylvie, Ruether, Klaus, Gailus-Durner, Valérie, Fuchs, Helmut, de Angelis, Martin Hrabě, Cotman, Susan L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368842/
https://www.ncbi.nlm.nih.gov/pubmed/22701626
http://dx.doi.org/10.1371/journal.pone.0038310
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author Staropoli, John F.
Haliw, Larissa
Biswas, Sunita
Garrett, Lillian
Hölter, Sabine M.
Becker, Lore
Skosyrski, Sergej
Da Silva-Buttkus, Patricia
Calzada-Wack, Julia
Neff, Frauke
Rathkolb, Birgit
Rozman, Jan
Schrewe, Anja
Adler, Thure
Puk, Oliver
Sun, Minxuan
Favor, Jack
Racz, Ildikó
Bekeredjian, Raffi
Busch, Dirk H.
Graw, Jochen
Klingenspor, Martin
Klopstock, Thomas
Wolf, Eckhard
Wurst, Wolfgang
Zimmer, Andreas
Lopez, Edith
Harati, Hayat
Hill, Eric
Krause, Daniela S.
Guide, Jolene
Dragileva, Ella
Gale, Evan
Wheeler, Vanessa C.
Boustany, Rose-Mary
Brown, Diane E.
Breton, Sylvie
Ruether, Klaus
Gailus-Durner, Valérie
Fuchs, Helmut
de Angelis, Martin Hrabě
Cotman, Susan L.
author_facet Staropoli, John F.
Haliw, Larissa
Biswas, Sunita
Garrett, Lillian
Hölter, Sabine M.
Becker, Lore
Skosyrski, Sergej
Da Silva-Buttkus, Patricia
Calzada-Wack, Julia
Neff, Frauke
Rathkolb, Birgit
Rozman, Jan
Schrewe, Anja
Adler, Thure
Puk, Oliver
Sun, Minxuan
Favor, Jack
Racz, Ildikó
Bekeredjian, Raffi
Busch, Dirk H.
Graw, Jochen
Klingenspor, Martin
Klopstock, Thomas
Wolf, Eckhard
Wurst, Wolfgang
Zimmer, Andreas
Lopez, Edith
Harati, Hayat
Hill, Eric
Krause, Daniela S.
Guide, Jolene
Dragileva, Ella
Gale, Evan
Wheeler, Vanessa C.
Boustany, Rose-Mary
Brown, Diane E.
Breton, Sylvie
Ruether, Klaus
Gailus-Durner, Valérie
Fuchs, Helmut
de Angelis, Martin Hrabě
Cotman, Susan L.
author_sort Staropoli, John F.
collection PubMed
description Cln3(Δex7/8) mice harbor the most common genetic defect causing juvenile neuronal ceroid lipofuscinosis (JNCL), an autosomal recessive disease involving seizures, visual, motor and cognitive decline, and premature death. Here, to more thoroughly investigate the manifestations of the common JNCL mutation, we performed a broad phenotyping study of Cln3(Δex7/8) mice. Homozygous Cln3(Δex7/8) mice, congenic on a C57BL/6N background, displayed subtle deficits in sensory and motor tasks at 10–14 weeks of age. Homozygous Cln3(Δex7/8) mice also displayed electroretinographic changes reflecting cone function deficits past 5 months of age and a progressive decline of retinal post-receptoral function. Metabolic analysis revealed increases in rectal body temperature and minimum oxygen consumption in 12–13 week old homozygous Cln3(Δex7/8)mice, which were also seen to a lesser extent in heterozygous Cln3(Δex7/8) mice. Heart weight was slightly increased at 20 weeks of age, but no significant differences were observed in cardiac function in young adults. In a comprehensive blood analysis at 15–16 weeks of age, serum ferritin concentrations, mean corpuscular volume of red blood cells (MCV), and reticulocyte counts were reproducibly increased in homozygous Cln3 (Δ) (ex7/8) mice, and male homozygotes had a relative T-cell deficiency, suggesting alterations in hematopoiesis. Finally, consistent with findings in JNCL patients, vacuolated peripheral blood lymphocytes were observed in homozygous Cln3 (Δ) (ex7/8) neonates, and to a greater extent in older animals. Early onset, severe vacuolation in clear cells of the epididymis of male homozygous Cln3 (Δ) (ex7/8) mice was also observed. These data highlight additional organ systems in which to study CLN3 function, and early phenotypes have been established in homozygous Cln3 (Δ) (ex7/8) mice that merit further study for JNCL biomarker development.
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spelling pubmed-33688422012-06-13 Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System Staropoli, John F. Haliw, Larissa Biswas, Sunita Garrett, Lillian Hölter, Sabine M. Becker, Lore Skosyrski, Sergej Da Silva-Buttkus, Patricia Calzada-Wack, Julia Neff, Frauke Rathkolb, Birgit Rozman, Jan Schrewe, Anja Adler, Thure Puk, Oliver Sun, Minxuan Favor, Jack Racz, Ildikó Bekeredjian, Raffi Busch, Dirk H. Graw, Jochen Klingenspor, Martin Klopstock, Thomas Wolf, Eckhard Wurst, Wolfgang Zimmer, Andreas Lopez, Edith Harati, Hayat Hill, Eric Krause, Daniela S. Guide, Jolene Dragileva, Ella Gale, Evan Wheeler, Vanessa C. Boustany, Rose-Mary Brown, Diane E. Breton, Sylvie Ruether, Klaus Gailus-Durner, Valérie Fuchs, Helmut de Angelis, Martin Hrabě Cotman, Susan L. PLoS One Research Article Cln3(Δex7/8) mice harbor the most common genetic defect causing juvenile neuronal ceroid lipofuscinosis (JNCL), an autosomal recessive disease involving seizures, visual, motor and cognitive decline, and premature death. Here, to more thoroughly investigate the manifestations of the common JNCL mutation, we performed a broad phenotyping study of Cln3(Δex7/8) mice. Homozygous Cln3(Δex7/8) mice, congenic on a C57BL/6N background, displayed subtle deficits in sensory and motor tasks at 10–14 weeks of age. Homozygous Cln3(Δex7/8) mice also displayed electroretinographic changes reflecting cone function deficits past 5 months of age and a progressive decline of retinal post-receptoral function. Metabolic analysis revealed increases in rectal body temperature and minimum oxygen consumption in 12–13 week old homozygous Cln3(Δex7/8)mice, which were also seen to a lesser extent in heterozygous Cln3(Δex7/8) mice. Heart weight was slightly increased at 20 weeks of age, but no significant differences were observed in cardiac function in young adults. In a comprehensive blood analysis at 15–16 weeks of age, serum ferritin concentrations, mean corpuscular volume of red blood cells (MCV), and reticulocyte counts were reproducibly increased in homozygous Cln3 (Δ) (ex7/8) mice, and male homozygotes had a relative T-cell deficiency, suggesting alterations in hematopoiesis. Finally, consistent with findings in JNCL patients, vacuolated peripheral blood lymphocytes were observed in homozygous Cln3 (Δ) (ex7/8) neonates, and to a greater extent in older animals. Early onset, severe vacuolation in clear cells of the epididymis of male homozygous Cln3 (Δ) (ex7/8) mice was also observed. These data highlight additional organ systems in which to study CLN3 function, and early phenotypes have been established in homozygous Cln3 (Δ) (ex7/8) mice that merit further study for JNCL biomarker development. Public Library of Science 2012-06-06 /pmc/articles/PMC3368842/ /pubmed/22701626 http://dx.doi.org/10.1371/journal.pone.0038310 Text en Staropoli et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Staropoli, John F.
Haliw, Larissa
Biswas, Sunita
Garrett, Lillian
Hölter, Sabine M.
Becker, Lore
Skosyrski, Sergej
Da Silva-Buttkus, Patricia
Calzada-Wack, Julia
Neff, Frauke
Rathkolb, Birgit
Rozman, Jan
Schrewe, Anja
Adler, Thure
Puk, Oliver
Sun, Minxuan
Favor, Jack
Racz, Ildikó
Bekeredjian, Raffi
Busch, Dirk H.
Graw, Jochen
Klingenspor, Martin
Klopstock, Thomas
Wolf, Eckhard
Wurst, Wolfgang
Zimmer, Andreas
Lopez, Edith
Harati, Hayat
Hill, Eric
Krause, Daniela S.
Guide, Jolene
Dragileva, Ella
Gale, Evan
Wheeler, Vanessa C.
Boustany, Rose-Mary
Brown, Diane E.
Breton, Sylvie
Ruether, Klaus
Gailus-Durner, Valérie
Fuchs, Helmut
de Angelis, Martin Hrabě
Cotman, Susan L.
Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System
title Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System
title_full Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System
title_fullStr Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System
title_full_unstemmed Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System
title_short Large-Scale Phenotyping of an Accurate Genetic Mouse Model of JNCL Identifies Novel Early Pathology Outside the Central Nervous System
title_sort large-scale phenotyping of an accurate genetic mouse model of jncl identifies novel early pathology outside the central nervous system
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3368842/
https://www.ncbi.nlm.nih.gov/pubmed/22701626
http://dx.doi.org/10.1371/journal.pone.0038310
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