Modification by Ubiquitin-Like Proteins: Significance in Apoptosis and Autophagy Pathways

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Auteurs principaux: Cajee, Umar-Faruq, Hull, Rodney, Ntwasa, Monde
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Publié: Zenodo 2012
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author Cajee, Umar-Faruq
Hull, Rodney
Ntwasa, Monde
author_facet Cajee, Umar-Faruq
Hull, Rodney
Ntwasa, Monde
contents (Uploaded by Plazi for the Bat Literature Project) Ubiquitin-like proteins (Ubls) confer diverse functions on their target proteins. The modified proteins are involved in various biological processes, including DNA replication, signal transduction, cell cycle control, embryogenesis, cytoskeletal regulation, metabolism, stress response, homeostasis and mRNA processing. Modifiers such as SUMO, ATG12, ISG15, FAT10, URM1, and UFM have been shown to modify proteins thus conferring functions related to programmed cell death, autophagy and regulation of the immune system. Putative modifiers such as Domain With No Name (DWNN) have been identified in recent times but not fully characterized. In this review, we focus on cellular processes involving human Ubls and their targets. We review current progress in targeting these modifiers for drug design strategies.
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publishDate 2012
publisher Zenodo
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spellingShingle Modification by Ubiquitin-Like Proteins: Significance in Apoptosis and Autophagy Pathways
Cajee, Umar-Faruq
Hull, Rodney
Ntwasa, Monde
DWNN
SNAMA
Ubls
apoptosis
autophagy
cancer
immune response
p53
ubiquitin-like
ubiquitin-proteasome
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
(Uploaded by Plazi for the Bat Literature Project) Ubiquitin-like proteins (Ubls) confer diverse functions on their target proteins. The modified proteins are involved in various biological processes, including DNA replication, signal transduction, cell cycle control, embryogenesis, cytoskeletal regulation, metabolism, stress response, homeostasis and mRNA processing. Modifiers such as SUMO, ATG12, ISG15, FAT10, URM1, and UFM have been shown to modify proteins thus conferring functions related to programmed cell death, autophagy and regulation of the immune system. Putative modifiers such as Domain With No Name (DWNN) have been identified in recent times but not fully characterized. In this review, we focus on cellular processes involving human Ubls and their targets. We review current progress in targeting these modifiers for drug design strategies.
title Modification by Ubiquitin-Like Proteins: Significance in Apoptosis and Autophagy Pathways
topic DWNN
SNAMA
Ubls
apoptosis
autophagy
cancer
immune response
p53
ubiquitin-like
ubiquitin-proteasome
Biodiversity
Mammalia
Chiroptera
Chordata
Animalia
bats
bat
url https://doi.org/10.5281/zenodo.13530649