Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency

Abnormal myelination has been observed across several neurodegenerative conditions, and is hypothesised to be a key factor leading to disease pathophysiology. Here, we investigate early molecular mechanisms leading to abnormal myelination using Ermin deficiency as a model. Ermin is a gene expressed...

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Main Authors: Oh, Sher Li, Ziaei, Amin, Tan, Liang Juin, Utami, Kagistia Hana, Pouladi, Mahmoud A., Langley, Sarah Raye
Other Authors: Interdisciplinary Graduate School (IGS)
Format: Conference or Workshop Item
Language:English
Published: 2024
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Online Access:https://hdl.handle.net/10356/173229
https://www.grc.org/myelin-conference/2024/
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-1732292024-03-31T15:38:17Z Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency Oh, Sher Li Ziaei, Amin Tan, Liang Juin Utami, Kagistia Hana Pouladi, Mahmoud A. Langley, Sarah Raye Interdisciplinary Graduate School (IGS) Lee Kong Chian School of Medicine (LKCMedicine) 2024 Myelin Gordon Research Conference (GRC) Translational Laboratory in Genetic Medicine, A*STAR University of British Columbia Cardiff University Medicine, Health and Life Sciences Neurological disorders Ermin deficiency Abnormal myelination has been observed across several neurodegenerative conditions, and is hypothesised to be a key factor leading to disease pathophysiology. Here, we investigate early molecular mechanisms leading to abnormal myelination using Ermin deficiency as a model. Ermin is a gene expressed specifically in oligodendrocytes during the late stage of myelination, and its altered expression has been associated with several neurological conditions, including epilepsy, schizophrenia, and a familial form of multiple sclerosis, although its involvement in their pathophysiology is still unclear. We studied the transcriptome of Ermin-deficient mice using gene co-expression and differential gene expression analyses to investigate early transcriptional effects of Ermin deficiency across age and sex. We observed altered expression of transcription factors at early ages, and in protein processing and synaptic function over time. In silico gene perturbation and ChIP-seq analysis were used to elucidate the roles that differentially expressed transcription factors play in oligodendrocyte differentiation and as well as in their effects on protein processing and synaptic function. Finally, we assessed the relationship between early molecular changes in Ermin deficiency in neurological conditions using genome-wide association studies. Our observations suggest that there are common mechanisms between Ermin deficiency and biological processes influenced by genetic variants of genetic generalised epilepsy. Our findings demonstrate that in the Ermin-deficient model of abnormal myelination, early changes in transcription factor expression are associated with dysregulation in oligodendrocyte differentiation, synaptic organisation, and protein modification. These transcriptional changes are also enriched for genetic variants in neurological disease and provide insight into the early molecular mechanisms involving abnormal myelination in neurological disorders. Submitted/Accepted version 2024-03-25T07:25:19Z 2024-03-25T07:25:19Z 2024 Conference Paper Oh, S. L., Ziaei, A., Tan, L. J., Utami, K. H., Pouladi, M. A. & Langley, S. R. (2024). Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency. 2024 Myelin Gordon Research Conference (GRC). https://hdl.handle.net/10356/173229 https://www.grc.org/myelin-conference/2024/ en © 2024 Gordon Research Conferences. All rights reserved. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic Medicine, Health and Life Sciences
Neurological disorders
Ermin deficiency
spellingShingle Medicine, Health and Life Sciences
Neurological disorders
Ermin deficiency
Oh, Sher Li
Ziaei, Amin
Tan, Liang Juin
Utami, Kagistia Hana
Pouladi, Mahmoud A.
Langley, Sarah Raye
Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency
description Abnormal myelination has been observed across several neurodegenerative conditions, and is hypothesised to be a key factor leading to disease pathophysiology. Here, we investigate early molecular mechanisms leading to abnormal myelination using Ermin deficiency as a model. Ermin is a gene expressed specifically in oligodendrocytes during the late stage of myelination, and its altered expression has been associated with several neurological conditions, including epilepsy, schizophrenia, and a familial form of multiple sclerosis, although its involvement in their pathophysiology is still unclear. We studied the transcriptome of Ermin-deficient mice using gene co-expression and differential gene expression analyses to investigate early transcriptional effects of Ermin deficiency across age and sex. We observed altered expression of transcription factors at early ages, and in protein processing and synaptic function over time. In silico gene perturbation and ChIP-seq analysis were used to elucidate the roles that differentially expressed transcription factors play in oligodendrocyte differentiation and as well as in their effects on protein processing and synaptic function. Finally, we assessed the relationship between early molecular changes in Ermin deficiency in neurological conditions using genome-wide association studies. Our observations suggest that there are common mechanisms between Ermin deficiency and biological processes influenced by genetic variants of genetic generalised epilepsy. Our findings demonstrate that in the Ermin-deficient model of abnormal myelination, early changes in transcription factor expression are associated with dysregulation in oligodendrocyte differentiation, synaptic organisation, and protein modification. These transcriptional changes are also enriched for genetic variants in neurological disease and provide insight into the early molecular mechanisms involving abnormal myelination in neurological disorders.
author2 Interdisciplinary Graduate School (IGS)
author_facet Interdisciplinary Graduate School (IGS)
Oh, Sher Li
Ziaei, Amin
Tan, Liang Juin
Utami, Kagistia Hana
Pouladi, Mahmoud A.
Langley, Sarah Raye
format Conference or Workshop Item
author Oh, Sher Li
Ziaei, Amin
Tan, Liang Juin
Utami, Kagistia Hana
Pouladi, Mahmoud A.
Langley, Sarah Raye
author_sort Oh, Sher Li
title Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency
title_short Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency
title_full Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency
title_fullStr Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency
title_full_unstemmed Understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising Ermin deficiency
title_sort understanding early molecular mechanisms of abnormal myelination in neurological conditions by characterising ermin deficiency
publishDate 2024
url https://hdl.handle.net/10356/173229
https://www.grc.org/myelin-conference/2024/
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