gRASping the redox lever to modulate cancer cell fate signaling

Autor: Chuan Han Jonathan Foo, Shazib Pervaiz
Jazyk: angličtina
Rok vydání: 2019
Předmět:
GSSG
Glutathione disulfide

DUOX
Dual oxidase

FOXO3A
Forkhead box O3a

Rac
Ras-related C3 botulinum toxin substrate

Biochemistry
GAP
GTPase-activating protein

0302 clinical medicine
Fe2+
Iron (II) ion

TNF-α
Tumor necrosis factor-α

NSCLC
Non-small cell lung cancer

NOS
Nitric oxide synthase

lcsh:QH301-705.5
Cancer
Mutation
Trx
Thioredoxin

ERK
Extracellular signal-regulated kinase

miR
Micro-Ribonucleic acid

FMN
Flavin mononucleotide

GSR
Glutathione disulfide reductase

Keap1
Kelch-like ECH-associated protein 1

TRAF
TNFR-associated factor

IMM
Inner mitochondrial membrane

MnSOD/SOD2
Manganese superoxide dismutase

NF-κB
Nuclear factor kappa-light-chain-enhancer of B cell

EGF
Epidermal growth factor

ATP
Adenosine triphosphate

NADPH
Nicotinamide adenine dinucleotide phosphate

RNS
Reactive nitrogen species

GTP
Guanosine triphosphate

lcsh:Medicine (General)
PPP
Pentose Phosphate Pathway

SESN
sestrin

Ca2+
Calcium (ii) ion

DRP1
Dynamin-related protein 1

GEF
GTP exchange factors

NO
Nitric oxide

Article
ECSOD/SOD3
Extracellular superoxide dismutase

03 medical and health sciences
Atg
Autophagy-related

Humans
Cell Lineage
TrxR
Thioredoxin reductase

O2
Oxygen

PTEN
Phosphatase and tensin homolog

MPK
MAPK phosphatase

mTOR
Mammalian target of rapamycin

RAF
Rapidly Accelerated Fibrosarcoma

Zn2+
Zinc (II) ion

mTORC1
Mammalian target of rapamycin complex 1

medicine.disease
SASP
Senescence-associated secretory phenotype

030104 developmental biology
ONOO-
Peroxynitrite

CuZnSOD/SOD1
Copper Zinc superoxide dismutase

Cancer cell
ras Proteins
Prx
Peroxiredoxin

Carcinogenesis
Reactive Oxygen Species
Neuroscience
030217 neurology & neurosurgery
RAS
0301 basic medicine
MKLK
Mixed lineage kinase domain like pseudokinase

Clinical Biochemistry
MAPK
Mitogen-activated protein kinase

H2O2
Hydrogen peroxide

medicine.disease_cause
PI3K
phospoinositide-3-kinase

PDI
Protein disulfide isomerase

SOD
Superoxide dismutase

DNA
Deoxyribonucleic acid

Neoplasms
GAPDH
Glyceraldehyde-3-phosphate dehydrogenase

GDP
Guanosine diphosphate

TCA cycle
Citric acid cycle

GSH
Glutathione

lcsh:R5-920
HOCl
Hypochlorous acid

AKT
Protein kinase B

Nrf2
Nuclear factor erythroid-related factor 2

NOX
NADPH oxidase

JNK
c-Jun N-terminal Kinase

RIPK
Receptor interacting protein kinase

GPx
Glutathione peroxidase

Pim1
Proto-oncogene serine/threonine-protein kinase Pim-1

Cu2+
Copper (II) ion

Oxidation-Reduction
PTP
protein tyrosine phosphatase

SH2
Src homology 2

Signal Transduction
GLUT1
Glucose transporter 1

Cellular functions
O2•-
Superoxide anion

Biology
•HO
Hydroxyl radical

Dual role
ER
Endoplasmic reticulum

TNFR
Tumor necrosis factor receptor

MEK
Mitogen-activated protein kinase kinase

RAS
Rat sarcoma

medicine
Animals
Mn3+
Manganese (III) ion

G6PD
Glucose-6-phosphate dehydrogenase

BAX
Bcl-2-associated X protein

Cell growth
Organic Chemistry
ASK1
Apoptosis signal-regulating kinase 1

ETC
Electron transport chain

lcsh:Biology (General)
DPI
Diphenyleneiodonium

•NO2
Nitrogen dioxide

ROS
Reactive Oxygen Species
Zdroj: Redox Biology, Vol 25, Iss, Pp-(2019)
Redox Biology
ISSN: 2213-2317
Popis: RAS proteins are critical regulators of signaling networks controlling diverse cellular functions such as cell proliferation and survival and its mutation are among the most powerful oncogenic drivers in human cancers. Despite intense efforts, direct RAS-targeting strategies remain elusive due to its “undruggable” nature. To that end, bulk of the research efforts has been directed towards targeting upstream and/or downstream of RAS signaling. However, the therapeutic efficacies of these treatments are limited in the long run due to the acquired drug resistance in RAS-driven cancers. Interestingly, recent studies have uncovered a potential role of RAS in redox-regulation as well as the interplay between ROS and RAS-associated signaling networks during process of cancer initiation and progression. More specifically, these studies provide ample evidence to implicate RAS as a redox-rheostat, manipulating ROS levels to provide a redox-milieu conducive for carcinogenesis. Importantly, the understanding of RAS-ROS interplay could provide us with novel targetable vulnerabilities for designing therapeutic strategies. In this review, we provide a brief summary of the advances in the field to illustrate the dual role of RAS in redox-regulation and its implications in RAS signaling outcomes and also emerging redox-based strategies to target RAS-driven cancers. Keywords: Cancer, RAS, Reactive Oxygen Species
Databáze: OpenAIRE