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Extracellular renalase protects cells and organs by outside‐in signalling
by
Wang, Yang
, Mu, Jian‐Jun
, Safirstein, Robert
, Hollander, Lindsay
, Chang, John
, Desir, Gary V.
, Velazquez, Heino
, Guo, Xiao‐Jia
, Chen, Tian‐Min
in
AKT protein
/ Blood pressure
/ Blood Pressure - drug effects
/ Cancer
/ Catecholamines
/ Catecholamines - metabolism
/ cell signalling
/ Cytokines - genetics
/ Cytokines - metabolism
/ Heart rate
/ Heart Rate - drug effects
/ Humans
/ immune‐oncology
/ ischaemic injury
/ Janus kinase
/ Kidney - enzymology
/ Kidney - metabolism
/ Kidney - pathology
/ Kidneys
/ Kinases
/ macrophages
/ MAP kinase
/ Monoamine Oxidase - metabolism
/ Monoamine Oxidase - therapeutic use
/ NAD
/ NAD(P)H oxidase
/ NADPH Oxidases - genetics
/ NADPH Oxidases - metabolism
/ Neoplasms - drug therapy
/ Oxidation-Reduction
/ Protein kinase
/ Proteins
/ renalase
/ Review
/ Reviews
/ Signal transduction
/ Survival
/ survival factor
/ Transcription
/ Translation
/ Tumors
2017
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Extracellular renalase protects cells and organs by outside‐in signalling
by
Wang, Yang
, Mu, Jian‐Jun
, Safirstein, Robert
, Hollander, Lindsay
, Chang, John
, Desir, Gary V.
, Velazquez, Heino
, Guo, Xiao‐Jia
, Chen, Tian‐Min
in
AKT protein
/ Blood pressure
/ Blood Pressure - drug effects
/ Cancer
/ Catecholamines
/ Catecholamines - metabolism
/ cell signalling
/ Cytokines - genetics
/ Cytokines - metabolism
/ Heart rate
/ Heart Rate - drug effects
/ Humans
/ immune‐oncology
/ ischaemic injury
/ Janus kinase
/ Kidney - enzymology
/ Kidney - metabolism
/ Kidney - pathology
/ Kidneys
/ Kinases
/ macrophages
/ MAP kinase
/ Monoamine Oxidase - metabolism
/ Monoamine Oxidase - therapeutic use
/ NAD
/ NAD(P)H oxidase
/ NADPH Oxidases - genetics
/ NADPH Oxidases - metabolism
/ Neoplasms - drug therapy
/ Oxidation-Reduction
/ Protein kinase
/ Proteins
/ renalase
/ Review
/ Reviews
/ Signal transduction
/ Survival
/ survival factor
/ Transcription
/ Translation
/ Tumors
2017
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Extracellular renalase protects cells and organs by outside‐in signalling
by
Wang, Yang
, Mu, Jian‐Jun
, Safirstein, Robert
, Hollander, Lindsay
, Chang, John
, Desir, Gary V.
, Velazquez, Heino
, Guo, Xiao‐Jia
, Chen, Tian‐Min
in
AKT protein
/ Blood pressure
/ Blood Pressure - drug effects
/ Cancer
/ Catecholamines
/ Catecholamines - metabolism
/ cell signalling
/ Cytokines - genetics
/ Cytokines - metabolism
/ Heart rate
/ Heart Rate - drug effects
/ Humans
/ immune‐oncology
/ ischaemic injury
/ Janus kinase
/ Kidney - enzymology
/ Kidney - metabolism
/ Kidney - pathology
/ Kidneys
/ Kinases
/ macrophages
/ MAP kinase
/ Monoamine Oxidase - metabolism
/ Monoamine Oxidase - therapeutic use
/ NAD
/ NAD(P)H oxidase
/ NADPH Oxidases - genetics
/ NADPH Oxidases - metabolism
/ Neoplasms - drug therapy
/ Oxidation-Reduction
/ Protein kinase
/ Proteins
/ renalase
/ Review
/ Reviews
/ Signal transduction
/ Survival
/ survival factor
/ Transcription
/ Translation
/ Tumors
2017
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Extracellular renalase protects cells and organs by outside‐in signalling
Journal Article
Extracellular renalase protects cells and organs by outside‐in signalling
2017
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Overview
Renalase was discovered as a protein synthesized by the kidney and secreted in blood where it circulates at a concentration of approximately 3–5 μg/ml. Initial reports suggested that it functioned as an NAD(P)H oxidase and could oxidize catecholamines. Administration of renalase lowers blood pressure and heart rate and also protects cells and organs against ischaemic and toxic injury. Although renalase's protective effect was initially ascribed to its oxidase properties, a paradigm shift in our understanding of the cellular actions of renalase is underway. We now understand that, independent of its enzymatic properties, renalase functions as a cytokine that provides protection to cells, tissues and organs by interacting with its receptor to activate protein kinase B, JAK/STAT, and the mitogen‐activated protein kinase pathways. In addition, recent studies suggest that dysregulated renalase signalling may promote survival of several tumour cells due to its capacity to augment expression of growth‐related genes. In this review, we focus on the cytoprotective actions of renalase and its capacity to sustain cancer cell growth and also the translational opportunities these findings represent for the development of novel therapeutic strategies for organ injury and cancer.
Publisher
John Wiley & Sons, Inc,John Wiley and Sons Inc
Subject
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