Investigation of the effect mutations of CaM have upon in vitro and ex vivo function

Calmodulin (CaM) is a calcium-binding protein that has promiscuous regulatory interactions with over three hundred intracellular protein targets. The focus of this study was to characterize the functional role of phosphorylated CaM in vitro and calcium-deficient CaM (Apo-CaM) ex vivo. In the in vitr...

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Main Author: Israel, Odisho
Language:en
Published: 2010
Subjects:
Online Access:http://hdl.handle.net/10012/4973
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-OWTU.10012-49732013-10-04T04:09:40ZIsrael, Odisho2010-01-22T16:35:14Z2010-01-22T16:35:14Z2010-01-22T16:35:14Z2010http://hdl.handle.net/10012/4973Calmodulin (CaM) is a calcium-binding protein that has promiscuous regulatory interactions with over three hundred intracellular protein targets. The focus of this study was to characterize the functional role of phosphorylated CaM in vitro and calcium-deficient CaM (Apo-CaM) ex vivo. In the in vitro study, the effect of phosphorylated CaM on the binding and activation of CaM target proteins was analyzed using mammalian Nitric Oxide Synthase (NOS). NOS is an enzyme that catalyzes the conversion of L-arginine to L-citrulline and •NO. In addition, the activation of NOS by modified CaM proteins was also analyzed in the presence of a CaM binding peptide, PEP-19. Protein trafficking experiments were performed ex vivo to extend our understanding of Apo-CaM’s functional role in mammalian cells. The cell lines that were used in this investigation include mouse Embryonic Stem Cells (mESC), Human Umbilical Vein Endothelia Cells (HUVEC) and Human Neuronal Glioma Cells (HNGC). The major finding of this projects are: phosphorylation of selective CaM residues can attenuated NOS activity, electrostatic interactions are important in the activation of iNOS by CaM, and the activation of iNOS by CaM occurs in a calcium-dependent mannerenCalmodulinNitric Oxide SynthaseInvestigation of the effect mutations of CaM have upon in vitro and ex vivo functionThesis or DissertationChemistryMaster of ScienceChemistry
collection NDLTD
language en
sources NDLTD
topic Calmodulin
Nitric Oxide Synthase
Chemistry
spellingShingle Calmodulin
Nitric Oxide Synthase
Chemistry
Israel, Odisho
Investigation of the effect mutations of CaM have upon in vitro and ex vivo function
description Calmodulin (CaM) is a calcium-binding protein that has promiscuous regulatory interactions with over three hundred intracellular protein targets. The focus of this study was to characterize the functional role of phosphorylated CaM in vitro and calcium-deficient CaM (Apo-CaM) ex vivo. In the in vitro study, the effect of phosphorylated CaM on the binding and activation of CaM target proteins was analyzed using mammalian Nitric Oxide Synthase (NOS). NOS is an enzyme that catalyzes the conversion of L-arginine to L-citrulline and •NO. In addition, the activation of NOS by modified CaM proteins was also analyzed in the presence of a CaM binding peptide, PEP-19. Protein trafficking experiments were performed ex vivo to extend our understanding of Apo-CaM’s functional role in mammalian cells. The cell lines that were used in this investigation include mouse Embryonic Stem Cells (mESC), Human Umbilical Vein Endothelia Cells (HUVEC) and Human Neuronal Glioma Cells (HNGC). The major finding of this projects are: phosphorylation of selective CaM residues can attenuated NOS activity, electrostatic interactions are important in the activation of iNOS by CaM, and the activation of iNOS by CaM occurs in a calcium-dependent manner
author Israel, Odisho
author_facet Israel, Odisho
author_sort Israel, Odisho
title Investigation of the effect mutations of CaM have upon in vitro and ex vivo function
title_short Investigation of the effect mutations of CaM have upon in vitro and ex vivo function
title_full Investigation of the effect mutations of CaM have upon in vitro and ex vivo function
title_fullStr Investigation of the effect mutations of CaM have upon in vitro and ex vivo function
title_full_unstemmed Investigation of the effect mutations of CaM have upon in vitro and ex vivo function
title_sort investigation of the effect mutations of cam have upon in vitro and ex vivo function
publishDate 2010
url http://hdl.handle.net/10012/4973
work_keys_str_mv AT israelodisho investigationoftheeffectmutationsofcamhaveuponinvitroandexvivofunction
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