Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights

abstract: A synbody is a newly developed protein binding peptide which can be rapidly produced by chemical methods. The advantages of the synbody producing process make it a potential human proteome binding reagent. Most of the synbodies are designed to bind to specific proteins. The peptides incorp...

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Other Authors: Sun, Minyao (Author)
Format: Dissertation
Language:English
Published: 2011
Subjects:
Online Access:http://hdl.handle.net/2286/R.I.8946
id ndltd-asu.edu-item-8946
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spelling ndltd-asu.edu-item-89462018-06-22T03:01:32Z Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights abstract: A synbody is a newly developed protein binding peptide which can be rapidly produced by chemical methods. The advantages of the synbody producing process make it a potential human proteome binding reagent. Most of the synbodies are designed to bind to specific proteins. The peptides incorporated in a synbody are discovered with peptide microarray technology. Nevertheless, the targets for unknown synbodies can also be discovered by searching through a protein mixture. The first part of this thesis mainly focuses on the process of target searching, which was performed with immunoprecipitation assays and mass spectrometry analysis. Proteins are pulled down from the cell lysate by certain synbodies, and then these proteins are identified using mass spectrometry. After excluding non-specific bindings, the interaction between a synbody and its real target(s) can be verified with affinity measurements. As a specific example, the binding between 1-4-KCap synbody and actin was discovered. This result proved the feasibility of the mass spectrometry based method and also suggested that a high throughput synbody discovery platform for the human proteome could be developed. Besides the application of synbody development, the peptide microarray technology can also be used for immunosignatures. The composition of all types of antibodies existing in one's blood is related to an individual's health condition. A method, called immunosignaturing, has been developed for early disease diagnosis based on this principle. CIM10K microarray slides work as a platform for blood antibody detection in immunosignaturing. During the analysis of an immunosignature, the data from these slides needs to be validated by using landing light peptides. The second part of this thesis focuses on the validation of the data. A biotinylated peptide was used as a landing light on the new CIM10K slides. The data was collected in several rounds of tests and indicated that the variation among landing lights was significantly reduced by using the newly prepared biotinylated peptide compared with old peptide mixture. Several suggestions for further landing light improvement are proposed based on the results. Dissertation/Thesis Sun, Minyao (Author) Johnston, Stephen Albert (Advisor) Diehnelt, Chris Wayne (Committee member) Stafford, Phillip (Committee member) Arizona State University (Publisher) Biochemistry landing llight mass spectrometry microarray peptide synbody eng 71 pages M.S. Biological Design 2011 Masters Thesis http://hdl.handle.net/2286/R.I.8946 http://rightsstatements.org/vocab/InC/1.0/ All Rights Reserved 2011
collection NDLTD
language English
format Dissertation
sources NDLTD
topic Biochemistry
landing llight
mass spectrometry
microarray
peptide
synbody
spellingShingle Biochemistry
landing llight
mass spectrometry
microarray
peptide
synbody
Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights
description abstract: A synbody is a newly developed protein binding peptide which can be rapidly produced by chemical methods. The advantages of the synbody producing process make it a potential human proteome binding reagent. Most of the synbodies are designed to bind to specific proteins. The peptides incorporated in a synbody are discovered with peptide microarray technology. Nevertheless, the targets for unknown synbodies can also be discovered by searching through a protein mixture. The first part of this thesis mainly focuses on the process of target searching, which was performed with immunoprecipitation assays and mass spectrometry analysis. Proteins are pulled down from the cell lysate by certain synbodies, and then these proteins are identified using mass spectrometry. After excluding non-specific bindings, the interaction between a synbody and its real target(s) can be verified with affinity measurements. As a specific example, the binding between 1-4-KCap synbody and actin was discovered. This result proved the feasibility of the mass spectrometry based method and also suggested that a high throughput synbody discovery platform for the human proteome could be developed. Besides the application of synbody development, the peptide microarray technology can also be used for immunosignatures. The composition of all types of antibodies existing in one's blood is related to an individual's health condition. A method, called immunosignaturing, has been developed for early disease diagnosis based on this principle. CIM10K microarray slides work as a platform for blood antibody detection in immunosignaturing. During the analysis of an immunosignature, the data from these slides needs to be validated by using landing light peptides. The second part of this thesis focuses on the validation of the data. A biotinylated peptide was used as a landing light on the new CIM10K slides. The data was collected in several rounds of tests and indicated that the variation among landing lights was significantly reduced by using the newly prepared biotinylated peptide compared with old peptide mixture. Several suggestions for further landing light improvement are proposed based on the results. === Dissertation/Thesis === M.S. Biological Design 2011
author2 Sun, Minyao (Author)
author_facet Sun, Minyao (Author)
title Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights
title_short Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights
title_full Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights
title_fullStr Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights
title_full_unstemmed Mass Spectrometry: Reverse Process for Synbody Discovery & Validation of Peptide Microarray Data: A Story of Landing Lights
title_sort mass spectrometry: reverse process for synbody discovery & validation of peptide microarray data: a story of landing lights
publishDate 2011
url http://hdl.handle.net/2286/R.I.8946
_version_ 1718699270354239488