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SUMO Regulation of Cellular Processes

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Cover of 'SUMO Regulation of Cellular Processes'

Table of Contents

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    Book Overview
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    Chapter 1 Introduction to Sumoylation
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    Chapter 2 Roles of Sumoylation in mRNA Processing and Metabolism
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    Chapter 3 SUMO and Chromatin Remodeling
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    Chapter 4 Functions of SUMO in the Maintenance of Genome Stability
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    Chapter 5 Regulation of Cellular Processes by SUMO: Understudied Topics
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    Chapter 6 The Molecular Interface Between the SUMO and Ubiquitin Systems
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    Chapter 7 SUMO and Nucleocytoplasmic Transport
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    Chapter 8 Sumo Modification of Ion Channels
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    Chapter 9 The Roles of SUMO in Metabolic Regulation
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    Chapter 10 The SUMO Pathway in Mitosis
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    Chapter 11 Wrestling with Chromosomes: The Roles of SUMO During Meiosis.
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    Chapter 12 Sumoylation in Development and Differentiation
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    Chapter 13 The Role of Sumoylation in Senescence
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    Chapter 14 Regulation of Plant Cellular and Organismal Development by SUMO.
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    Chapter 15 SUMO in Drosophila Development
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    Chapter 16 Sumoylation: Implications for Neurodegenerative Diseases
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    Chapter 17 Sumoylation and Its Contribution to Cancer
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    Chapter 18 Sumoylation Modulates the Susceptibility to Type 1 Diabetes
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    Chapter 19 Sumoylation in Craniofacial Disorders
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    Chapter 20 Coordination of Cellular Localization-Dependent Effects of Sumoylation in Regulating Cardiovascular and Neurological Diseases
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    Chapter 21 Viral Interplay with the Host Sumoylation System
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    Chapter 22 Sumoylation as an Integral Mechanism in Bacterial Infection and Disease Progression
Attention for Chapter 20: Coordination of Cellular Localization-Dependent Effects of Sumoylation in Regulating Cardiovascular and Neurological Diseases
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Chapter title
Coordination of Cellular Localization-Dependent Effects of Sumoylation in Regulating Cardiovascular and Neurological Diseases
Chapter number 20
Book title
SUMO Regulation of Cellular Processes
Published in
Advances in experimental medicine and biology, February 2017
DOI 10.1007/978-3-319-50044-7_20
Pubmed ID
Book ISBNs
978-3-31-950043-0, 978-3-31-950044-7
Authors

Jun-ichi Abe, Uday G. Sandhu, Nguyet Minh Hoang, Manoj Thangam, Raymundo A. Quintana-Quezada, Keigi Fujiwara, Nhat Tu Le

Editors

Van G. Wilson

Abstract

Sumoylation, a reversible post-transcriptional modification process, of proteins are involved in cellular differentiation, growth, and even motility by regulating various protein functions. Sumoylation is not limited to cytosolic proteins as recent evidence shows that nuclear proteins, those associated with membranes, and mitochondrial proteins are also sumoylated. Moreover, it is now known that sumoylation plays an important role in the process of major human ailments such as malignant, cardiovascular and neurological diseases. In this chapter, we will highlight and discuss how the localization of SUMO protease and SUMO E3 ligase in different compartments within a cell regulates biological processes that depend on sumoylation. First, we will discuss the key role of sumoylation in the nucleus, which leads to the development of endothelial dysfunction and atherosclerosis . We will then discuss how sumoylation of plasma membrane potassium channel proteins are involved in epilepsy and arrhythmia. Mitochondrial proteins are known to be also sumoylated, and the importance of dynamic-related protein 1 (DRP1) sumoylation on mitochondrial function will be discussed. As we will emphasize throughout this review, sumoylation plays crucial roles in different cellular compartments, which is coordinately regulated by the translocation of various SUMO proteases and SUMO E3 ligase. Comprehensive approach will be necessary to understand the molecular mechanism for efficiently moving around various enzymes that regulate sumoylation within cells.

Mendeley readers

Mendeley readers

The data shown below were compiled from readership statistics for 18 Mendeley readers of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 18 100%

Demographic breakdown

Readers by professional status Count As %
Student > Master 4 22%
Researcher 3 17%
Student > Bachelor 3 17%
Unspecified 1 6%
Professor > Associate Professor 1 6%
Other 1 6%
Unknown 5 28%
Readers by discipline Count As %
Biochemistry, Genetics and Molecular Biology 5 28%
Chemistry 2 11%
Neuroscience 2 11%
Agricultural and Biological Sciences 1 6%
Unspecified 1 6%
Other 1 6%
Unknown 6 33%