Decoding cancer proteins: An in silico characterization of human TSPAN1

Human tetraspanin-1 (TSPAN1) originates from the protein group, transmembrane 4 superfamily (TM4SF), which are regarded as molecular scaffolds due to their ability to distribute proteins into varying functions such as microdomains encompassing adaptor, adhesion, and signaling proteins. These tetrasp...

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Main Author: Yap, Rianne Casey Yang
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Language:English
Published: Animo Repository 2023
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Online Access:https://animorepository.dlsu.edu.ph/etdb_chem/34
https://animorepository.dlsu.edu.ph/context/etdb_chem/article/1039/viewcontent/2023_Yap_Decoding_Cancer_Proteins__An_in_silico_characterization_of_human_Full_text.pdf
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spelling oai:animorepository.dlsu.edu.ph:etdb_chem-10392024-01-10T02:33:20Z Decoding cancer proteins: An in silico characterization of human TSPAN1 Yap, Rianne Casey Yang Human tetraspanin-1 (TSPAN1) originates from the protein group, transmembrane 4 superfamily (TM4SF), which are regarded as molecular scaffolds due to their ability to distribute proteins into varying functions such as microdomains encompassing adaptor, adhesion, and signaling proteins. These tetraspanin-enriched microdomains (TEMs) are formed through their interactions with transmembrane receptors and other proteins, allowing them to participate in essential biochemical processes occurring in the cellular environment. Given its significant presence in these activities, studies have found TSPAN1 to be abundantly associated with certain pathological conditions, such as the development of various types of cancers, including colorectal, esophageal, and prostate cancers. Despite the overexpression in cancer progression, its role and mechanism remain ambiguous due to the lack of comprehensive structural and functional studies on TSPAN1. Therefore, structural information is lacking as well. This study explored its intramolecular dynamics, stabilization, and potential ligand binding sites through the characterization of the three- dimensional structure of TSPAN1 using homology modeling and molecular dynamics simulations, compounded with network analysis, principal component analysis (PCA), and hydrogen bond analysis. 2023-09-08T07:00:00Z text application/pdf https://animorepository.dlsu.edu.ph/etdb_chem/34 https://animorepository.dlsu.edu.ph/context/etdb_chem/article/1039/viewcontent/2023_Yap_Decoding_Cancer_Proteins__An_in_silico_characterization_of_human_Full_text.pdf Chemistry Bachelor's Theses English Animo Repository Cancer Membrane proteins Biochemistry
institution De La Salle University
building De La Salle University Library
continent Asia
country Philippines
Philippines
content_provider De La Salle University Library
collection DLSU Institutional Repository
language English
topic Cancer
Membrane proteins
Biochemistry
spellingShingle Cancer
Membrane proteins
Biochemistry
Yap, Rianne Casey Yang
Decoding cancer proteins: An in silico characterization of human TSPAN1
description Human tetraspanin-1 (TSPAN1) originates from the protein group, transmembrane 4 superfamily (TM4SF), which are regarded as molecular scaffolds due to their ability to distribute proteins into varying functions such as microdomains encompassing adaptor, adhesion, and signaling proteins. These tetraspanin-enriched microdomains (TEMs) are formed through their interactions with transmembrane receptors and other proteins, allowing them to participate in essential biochemical processes occurring in the cellular environment. Given its significant presence in these activities, studies have found TSPAN1 to be abundantly associated with certain pathological conditions, such as the development of various types of cancers, including colorectal, esophageal, and prostate cancers. Despite the overexpression in cancer progression, its role and mechanism remain ambiguous due to the lack of comprehensive structural and functional studies on TSPAN1. Therefore, structural information is lacking as well. This study explored its intramolecular dynamics, stabilization, and potential ligand binding sites through the characterization of the three- dimensional structure of TSPAN1 using homology modeling and molecular dynamics simulations, compounded with network analysis, principal component analysis (PCA), and hydrogen bond analysis.
format text
author Yap, Rianne Casey Yang
author_facet Yap, Rianne Casey Yang
author_sort Yap, Rianne Casey Yang
title Decoding cancer proteins: An in silico characterization of human TSPAN1
title_short Decoding cancer proteins: An in silico characterization of human TSPAN1
title_full Decoding cancer proteins: An in silico characterization of human TSPAN1
title_fullStr Decoding cancer proteins: An in silico characterization of human TSPAN1
title_full_unstemmed Decoding cancer proteins: An in silico characterization of human TSPAN1
title_sort decoding cancer proteins: an in silico characterization of human tspan1
publisher Animo Repository
publishDate 2023
url https://animorepository.dlsu.edu.ph/etdb_chem/34
https://animorepository.dlsu.edu.ph/context/etdb_chem/article/1039/viewcontent/2023_Yap_Decoding_Cancer_Proteins__An_in_silico_characterization_of_human_Full_text.pdf
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