Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.

Background: Parkinson’s disease (PD) is a common, age-related, progressive and debilitating neurodegenerative disorder. Mutations in Leucine Rich Repeat Kinase 2 gene (LRRK2) are the cause of familial and sporadic PD. The pathophysiological role of LRRK2 in PD remains unclear. Our preliminary data s...

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Main Author: Chan, Clarice Zi Ying.
Other Authors: Surajit Bhattacharyya
Format: Final Year Project
Language:English
Published: 2013
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Online Access:http://hdl.handle.net/10356/52902
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Institution: Nanyang Technological University
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spelling sg-ntu-dr.10356-529022023-02-28T18:05:44Z Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease. Chan, Clarice Zi Ying. Surajit Bhattacharyya School of Biological Sciences Singapore General Hospital National Neuroscience Institute Tan Eng King Zhao Yi DRNTU::Science Background: Parkinson’s disease (PD) is a common, age-related, progressive and debilitating neurodegenerative disorder. Mutations in Leucine Rich Repeat Kinase 2 gene (LRRK2) are the cause of familial and sporadic PD. The pathophysiological role of LRRK2 in PD remains unclear. Our preliminary data showed that gene expression profiling were significantly different in wild type, G2019S and G2385R - LRRK2 stable transfected SH-SY5Y cell lines. Dopamine beta-hydroxylase (DBH) and DOPA decarboxylase (DDC) genes, found to be down regulated in the gene expression profiling, were verified by Real-time PCR. Dysregulation of dopamine metabolism is an important pathogenesis relevant to PD. In this project, we aim to identify the down regulations of DDC and DBH using LRRK2 stable transfected cell and transgenic drosophila model. Methodology/Principal findings: Western blotting has confirmed that there are significant down regulations of DDC and DBH in G2019S variant cells under normal and oxidative stress conditions. In G2385R variant cells, DBH expression levels were found to be significantly lower under both conditions as compared to wild type stable cells. This finding has verified previous gene expression profiling. Conclusion/Significance: Our results show that LRRK2 gene mutations play a critical role in the pathogenesis of PD by the dysregulation of dopamine metabolism as seen in LRRK2 variants stable transfection cell lines. Bachelor of Science in Biological Sciences 2013-05-29T02:43:15Z 2013-05-29T02:43:15Z 2013 2013 Final Year Project (FYP) http://hdl.handle.net/10356/52902 en Nanyang Technological University 32 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Science
spellingShingle DRNTU::Science
Chan, Clarice Zi Ying.
Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.
description Background: Parkinson’s disease (PD) is a common, age-related, progressive and debilitating neurodegenerative disorder. Mutations in Leucine Rich Repeat Kinase 2 gene (LRRK2) are the cause of familial and sporadic PD. The pathophysiological role of LRRK2 in PD remains unclear. Our preliminary data showed that gene expression profiling were significantly different in wild type, G2019S and G2385R - LRRK2 stable transfected SH-SY5Y cell lines. Dopamine beta-hydroxylase (DBH) and DOPA decarboxylase (DDC) genes, found to be down regulated in the gene expression profiling, were verified by Real-time PCR. Dysregulation of dopamine metabolism is an important pathogenesis relevant to PD. In this project, we aim to identify the down regulations of DDC and DBH using LRRK2 stable transfected cell and transgenic drosophila model. Methodology/Principal findings: Western blotting has confirmed that there are significant down regulations of DDC and DBH in G2019S variant cells under normal and oxidative stress conditions. In G2385R variant cells, DBH expression levels were found to be significantly lower under both conditions as compared to wild type stable cells. This finding has verified previous gene expression profiling. Conclusion/Significance: Our results show that LRRK2 gene mutations play a critical role in the pathogenesis of PD by the dysregulation of dopamine metabolism as seen in LRRK2 variants stable transfection cell lines.
author2 Surajit Bhattacharyya
author_facet Surajit Bhattacharyya
Chan, Clarice Zi Ying.
format Final Year Project
author Chan, Clarice Zi Ying.
author_sort Chan, Clarice Zi Ying.
title Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.
title_short Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.
title_full Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.
title_fullStr Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.
title_full_unstemmed Dysregulation of dopamine metabolism in LRRK2-associated Parkinson's disease.
title_sort dysregulation of dopamine metabolism in lrrk2-associated parkinson's disease.
publishDate 2013
url http://hdl.handle.net/10356/52902
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