Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures

As the plasma membrane of cells is inelastic and does not bend spontaneously, membrane curvature is an active process mediated by specialized proteins, lipids and the cytoskeleton. Membrane curvature plays a crucial role for changes in cell shape during cell migration, division and programmed cell d...

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Main Author: Tay, Nicholas Kian Wee
Other Authors: Zhao Wenting
Format: Final Year Project
Language:English
Published: 2019
Subjects:
Online Access:http://hdl.handle.net/10356/78018
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-780182023-03-03T15:35:18Z Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures Tay, Nicholas Kian Wee Zhao Wenting School of Chemical and Biomedical Engineering DRNTU::Engineering::Bioengineering As the plasma membrane of cells is inelastic and does not bend spontaneously, membrane curvature is an active process mediated by specialized proteins, lipids and the cytoskeleton. Membrane curvature plays a crucial role for changes in cell shape during cell migration, division and programmed cell death. One of the key membrane proteins that manages the key MAPK pathway known as Ras proteins, are commonly mutated and locked in an active state in cancer, disturbing the usual cell cycle and leading to carcinogenesis. It was discovered that different Ras isoforms form distinct and laterally segregated nanoclusters on the inner layers of the plasma membrane depending on the local lipid composition. As the local lipid composition may also affect the membrane curvature, there is an intriguing question whether Ras nanoclustering depends on the membrane curvature as well. By using fabricated arrays of nanobars to induce controlled plasma membrane curvature on a nanoscale level, the curvature responses of Ras isoforms and lipids were studied to better understand the biomechanisms of the plasma membrane in cancer cells. Bachelor of Engineering (Bioengineering) 2019-06-11T04:06:12Z 2019-06-11T04:06:12Z 2019 Final Year Project (FYP) http://hdl.handle.net/10356/78018 en Nanyang Technological University 52 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::Engineering::Bioengineering
spellingShingle DRNTU::Engineering::Bioengineering
Tay, Nicholas Kian Wee
Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures
description As the plasma membrane of cells is inelastic and does not bend spontaneously, membrane curvature is an active process mediated by specialized proteins, lipids and the cytoskeleton. Membrane curvature plays a crucial role for changes in cell shape during cell migration, division and programmed cell death. One of the key membrane proteins that manages the key MAPK pathway known as Ras proteins, are commonly mutated and locked in an active state in cancer, disturbing the usual cell cycle and leading to carcinogenesis. It was discovered that different Ras isoforms form distinct and laterally segregated nanoclusters on the inner layers of the plasma membrane depending on the local lipid composition. As the local lipid composition may also affect the membrane curvature, there is an intriguing question whether Ras nanoclustering depends on the membrane curvature as well. By using fabricated arrays of nanobars to induce controlled plasma membrane curvature on a nanoscale level, the curvature responses of Ras isoforms and lipids were studied to better understand the biomechanisms of the plasma membrane in cancer cells.
author2 Zhao Wenting
author_facet Zhao Wenting
Tay, Nicholas Kian Wee
format Final Year Project
author Tay, Nicholas Kian Wee
author_sort Tay, Nicholas Kian Wee
title Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures
title_short Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures
title_full Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures
title_fullStr Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures
title_full_unstemmed Revealing the effect of membrane curvature on lipid-mediated Ras clustering using nanostructures
title_sort revealing the effect of membrane curvature on lipid-mediated ras clustering using nanostructures
publishDate 2019
url http://hdl.handle.net/10356/78018
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