Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

The Hydra small ubiquitin‐like modifier

View through CrossRef
SUMO is a protein posttranslational modifier. SUMO cycle components are believed to be conserved in all eukaryotes. Proteomic analyses have lead to the identification a wealth of SUMO targets that are involved in almost every cellular function in eukaryotes. In this article, we describe the characterization of SUMO Cycle components in Hydra, a Cnidarian with an ability to regenerate body parts. In cells, the translated SUMO polypeptide cannot conjugate to a substrate protein unless the C‐terminal tail is cleaved, exposing the di‐Glycine motif. This critical task is done by SUMO proteases that in addition to SUMO maturation are also involved in deconjugating SUMO from its substrate. We describe the identification, bioinformatics analysis, cloning, and biochemical characterization of Hydra SUMO cycle components, with a focus on SUMO and SUMO proteases. We demonstrate that the ability of SUMO proteases to process immature SUMO is conserved from Hydra to flies. A transgenic Hydra, expressing a SUMO‐GFP fusion protein under a constitutive actin promoter, is generated in an attempt to monitor the SUMO Cycle in vivo as also to purify and identify SUMO targets in Hydra. genesis 51:619–629. © 2013 Wiley Periodicals, Inc.
Title: The Hydra small ubiquitin‐like modifier
Description:
SUMO is a protein posttranslational modifier.
SUMO cycle components are believed to be conserved in all eukaryotes.
Proteomic analyses have lead to the identification a wealth of SUMO targets that are involved in almost every cellular function in eukaryotes.
In this article, we describe the characterization of SUMO Cycle components in Hydra, a Cnidarian with an ability to regenerate body parts.
In cells, the translated SUMO polypeptide cannot conjugate to a substrate protein unless the C‐terminal tail is cleaved, exposing the di‐Glycine motif.
This critical task is done by SUMO proteases that in addition to SUMO maturation are also involved in deconjugating SUMO from its substrate.
We describe the identification, bioinformatics analysis, cloning, and biochemical characterization of Hydra SUMO cycle components, with a focus on SUMO and SUMO proteases.
We demonstrate that the ability of SUMO proteases to process immature SUMO is conserved from Hydra to flies.
A transgenic Hydra, expressing a SUMO‐GFP fusion protein under a constitutive actin promoter, is generated in an attempt to monitor the SUMO Cycle in vivo as also to purify and identify SUMO targets in Hydra.
genesis 51:619–629.
© 2013 Wiley Periodicals, Inc.

Related Results

Ubiquitin and Ubiquitin‐like Protein Conjugation
Ubiquitin and Ubiquitin‐like Protein Conjugation
Abstract Protein modification by ubiquitin and ubiquitin‐like proteins (Ubls) plays a pervasive role in eukaryotic cell regulation. One aim of this article is to survey t...
Triad1 Regulates Myelopoiesis through Different Ubiquitin Ligase Activities.
Triad1 Regulates Myelopoiesis through Different Ubiquitin Ligase Activities.
Abstract The modification of cellular proteins with poly-ubiquitin chains plays an essential role in hematopoiesis. Different types of ubiquitin chains may have oppo...
Hydra collecting for citizen scientists v2
Hydra collecting for citizen scientists v2
The freshwater cnidarian Hydra has been a model system for regeneration and developmental biology for over 250 years, but much remains unknown about their biodiversity and global d...
Hydra collecting for citizen scientists v3
Hydra collecting for citizen scientists v3
The freshwater cnidarian Hydra has been a model system for regeneration and developmental biology for over 250 years, but much remains unknown about their biodiversity and global d...
Epithelial morphogenesis in hydra requires de novo expression of extracellular matrix components and matrix metalloproteinases
Epithelial morphogenesis in hydra requires de novo expression of extracellular matrix components and matrix metalloproteinases
As a member of the phylum Cnidaria, the body wall of hydra is organized as an epithelium bilayer (ectoderm and endoderm) with an intervening extracellular matrix (ECM). Previous st...
Abstract 2728: Correlation of p62/ubiquitin IHC expression with clinicopathologic outcome in gastrointestinal carcinomas
Abstract 2728: Correlation of p62/ubiquitin IHC expression with clinicopathologic outcome in gastrointestinal carcinomas
Abstract Background:P62 and ubiquitin are small regulatory proteins demonstrated to have implications in the prognosis and survival of various malignancies including...
Mass spectrometry techniques for studying the ubiquitin system
Mass spectrometry techniques for studying the ubiquitin system
Post-translational control of proteins through covalent attachment of ubiquitin plays important roles in all eukaryotic cell functions. The ubiquitin system in humans consists of 2...

Back to Top