Keila S. Espinoza , Kyra N. Hermanson , Cameron A. Beard , Nicholas U. Schwartz , Justin M. Snider , Benjamin E. Low , Michael V. Wiles , Yusuf A. Hannun , Lina M. Obeid , Ashley J. Snider
{"title":"一种新型HSPB1S139F小鼠腓骨肌萎缩症模型","authors":"Keila S. Espinoza , Kyra N. Hermanson , Cameron A. Beard , Nicholas U. Schwartz , Justin M. Snider , Benjamin E. Low , Michael V. Wiles , Yusuf A. Hannun , Lina M. Obeid , Ashley J. Snider","doi":"10.1016/j.prostaglandins.2023.106769","DOIUrl":null,"url":null,"abstract":"<div><p><span><span>Charcot-Marie-Tooth Disease (CMT) is a commonly inherited peripheral polyneuropathy. Clinical manifestations for this disease include symmetrical distal polyneuropathy, altered deep tendon reflexes, distal sensory loss, foot deformities, and gait abnormalities. </span>Genetic mutations<span> in heat shock proteins have been linked to CMT2. Specifically, mutations in the heat shock protein B1 (</span></span><em>HSPB1</em>) gene encoding for heat shock protein 27 (Hsp27) have been linked to CMT2F and distal hereditary motor and sensory neuropathy type 2B (dHMSN2B) subtype. The goal of the study was to examine the role of an endogenous mutation in HSPB1 <em>in vivo</em><span> and to define the effects of this mutation on motor function and pathology in a novel animal model<span><span>. As sphingolipids have been implicated in hereditary and sensory neuropathies, we examined </span>sphingolipid metabolism in central and peripheral nervous tissues in 3-month-old Hsp</span></span><sup>S139F</sup> mice. Though sphingolipid levels were not altered in sciatic nerves from Hsp<sup>S139F</sup><span> mice, ceramides<span> and deoxyceramides, as well as sphingomyelins (SMs) were elevated in brain tissues from Hsp</span></span><sup>S139F</sup> mice. Histology was utilized to further characterize Hsp<sup>S139F</sup> mice. Hsp<sup>S139F</sup><span> mice exhibited no alterations to the expression and phosphorylation of neurofilaments, or in the expression of acetylated α-tubulin in the brain or sciatic nerve. Interestingly, Hsp</span><sup>S139F</sup> mice demonstrated cerebellar demyelination. Locomotor function, grip strength and gait were examined to define the role of Hsp<sup>S139F</sup> in the clinical phenotypes associated with CMT2F. Gait analysis revealed no differences between Hsp<sup>WT</sup> and Hsp<sup>S139F</sup> mice. However, both coordination and grip strength were decreased in 3-month-old Hsp<sup>S139F</sup> mice. Together these data suggest that the endogenous S139F mutation in HSPB1 may serve as a mouse model for hereditary and sensory neuropathies such as CMT2F.</p></div>","PeriodicalId":21161,"journal":{"name":"Prostaglandins & other lipid mediators","volume":null,"pages":null},"PeriodicalIF":2.5000,"publicationDate":"2023-08-23","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"A novel HSPB1S139F mouse model of Charcot-Marie-Tooth Disease\",\"authors\":\"Keila S. Espinoza , Kyra N. Hermanson , Cameron A. Beard , Nicholas U. Schwartz , Justin M. Snider , Benjamin E. Low , Michael V. Wiles , Yusuf A. Hannun , Lina M. Obeid , Ashley J. Snider\",\"doi\":\"10.1016/j.prostaglandins.2023.106769\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p><span><span>Charcot-Marie-Tooth Disease (CMT) is a commonly inherited peripheral polyneuropathy. Clinical manifestations for this disease include symmetrical distal polyneuropathy, altered deep tendon reflexes, distal sensory loss, foot deformities, and gait abnormalities. </span>Genetic mutations<span> in heat shock proteins have been linked to CMT2. Specifically, mutations in the heat shock protein B1 (</span></span><em>HSPB1</em>) gene encoding for heat shock protein 27 (Hsp27) have been linked to CMT2F and distal hereditary motor and sensory neuropathy type 2B (dHMSN2B) subtype. The goal of the study was to examine the role of an endogenous mutation in HSPB1 <em>in vivo</em><span> and to define the effects of this mutation on motor function and pathology in a novel animal model<span><span>. As sphingolipids have been implicated in hereditary and sensory neuropathies, we examined </span>sphingolipid metabolism in central and peripheral nervous tissues in 3-month-old Hsp</span></span><sup>S139F</sup> mice. Though sphingolipid levels were not altered in sciatic nerves from Hsp<sup>S139F</sup><span> mice, ceramides<span> and deoxyceramides, as well as sphingomyelins (SMs) were elevated in brain tissues from Hsp</span></span><sup>S139F</sup> mice. Histology was utilized to further characterize Hsp<sup>S139F</sup> mice. Hsp<sup>S139F</sup><span> mice exhibited no alterations to the expression and phosphorylation of neurofilaments, or in the expression of acetylated α-tubulin in the brain or sciatic nerve. Interestingly, Hsp</span><sup>S139F</sup> mice demonstrated cerebellar demyelination. Locomotor function, grip strength and gait were examined to define the role of Hsp<sup>S139F</sup> in the clinical phenotypes associated with CMT2F. Gait analysis revealed no differences between Hsp<sup>WT</sup> and Hsp<sup>S139F</sup> mice. However, both coordination and grip strength were decreased in 3-month-old Hsp<sup>S139F</sup> mice. Together these data suggest that the endogenous S139F mutation in HSPB1 may serve as a mouse model for hereditary and sensory neuropathies such as CMT2F.</p></div>\",\"PeriodicalId\":21161,\"journal\":{\"name\":\"Prostaglandins & other lipid mediators\",\"volume\":null,\"pages\":null},\"PeriodicalIF\":2.5000,\"publicationDate\":\"2023-08-23\",\"publicationTypes\":\"Journal Article\",\"fieldsOfStudy\":null,\"isOpenAccess\":false,\"openAccessPdf\":\"\",\"citationCount\":\"0\",\"resultStr\":null,\"platform\":\"Semanticscholar\",\"paperid\":null,\"PeriodicalName\":\"Prostaglandins & other lipid mediators\",\"FirstCategoryId\":\"99\",\"ListUrlMain\":\"https://www.sciencedirect.com/science/article/pii/S1098882323000667\",\"RegionNum\":3,\"RegionCategory\":\"生物学\",\"ArticlePicture\":[],\"TitleCN\":null,\"AbstractTextCN\":null,\"PMCID\":null,\"EPubDate\":\"\",\"PubModel\":\"\",\"JCR\":\"Q3\",\"JCRName\":\"BIOCHEMISTRY & MOLECULAR BIOLOGY\",\"Score\":null,\"Total\":0}","platform":"Semanticscholar","paperid":null,"PeriodicalName":"Prostaglandins & other lipid mediators","FirstCategoryId":"99","ListUrlMain":"https://www.sciencedirect.com/science/article/pii/S1098882323000667","RegionNum":3,"RegionCategory":"生物学","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"BIOCHEMISTRY & MOLECULAR BIOLOGY","Score":null,"Total":0}
A novel HSPB1S139F mouse model of Charcot-Marie-Tooth Disease
Charcot-Marie-Tooth Disease (CMT) is a commonly inherited peripheral polyneuropathy. Clinical manifestations for this disease include symmetrical distal polyneuropathy, altered deep tendon reflexes, distal sensory loss, foot deformities, and gait abnormalities. Genetic mutations in heat shock proteins have been linked to CMT2. Specifically, mutations in the heat shock protein B1 (HSPB1) gene encoding for heat shock protein 27 (Hsp27) have been linked to CMT2F and distal hereditary motor and sensory neuropathy type 2B (dHMSN2B) subtype. The goal of the study was to examine the role of an endogenous mutation in HSPB1 in vivo and to define the effects of this mutation on motor function and pathology in a novel animal model. As sphingolipids have been implicated in hereditary and sensory neuropathies, we examined sphingolipid metabolism in central and peripheral nervous tissues in 3-month-old HspS139F mice. Though sphingolipid levels were not altered in sciatic nerves from HspS139F mice, ceramides and deoxyceramides, as well as sphingomyelins (SMs) were elevated in brain tissues from HspS139F mice. Histology was utilized to further characterize HspS139F mice. HspS139F mice exhibited no alterations to the expression and phosphorylation of neurofilaments, or in the expression of acetylated α-tubulin in the brain or sciatic nerve. Interestingly, HspS139F mice demonstrated cerebellar demyelination. Locomotor function, grip strength and gait were examined to define the role of HspS139F in the clinical phenotypes associated with CMT2F. Gait analysis revealed no differences between HspWT and HspS139F mice. However, both coordination and grip strength were decreased in 3-month-old HspS139F mice. Together these data suggest that the endogenous S139F mutation in HSPB1 may serve as a mouse model for hereditary and sensory neuropathies such as CMT2F.
期刊介绍:
Prostaglandins & Other Lipid Mediators is the original and foremost journal dealing with prostaglandins and related lipid mediator substances. It includes basic and clinical studies related to the pharmacology, physiology, pathology and biochemistry of lipid mediators.
Prostaglandins & Other Lipid Mediators invites reports of original research, mini-reviews, reviews, and methods articles in the basic and clinical aspects of all areas of lipid mediator research: cell biology, developmental biology, genetics, molecular biology, chemistry, biochemistry, physiology, pharmacology, endocrinology, biology, the medical sciences, and epidemiology.
Prostaglandins & Other Lipid Mediators also accepts proposals for special issue topics. The Editors will make every effort to advise authors of the decision on the submitted manuscript within 3-4 weeks of receipt.