Javascript must be enabled to continue!
Acetyl-CoA: An interplay between metabolism and epigenetics in cancer
View through CrossRef
Due to its high mortality and severe economic burden, cancer has become one of the most difficult medical problems to solve today. As a key node in metabolism and the main producer of energy, acetyl-coenzyme A (acetyl-CoA) plays an important role in the invasion and migration of cancer. In this review, we discuss metabolic pathways involving acetyl-CoA, the targeted therapy of cancer through acetyl-CoA metabolic pathways and the roles of epigenetic modifications in cancer. In particular, we emphasize that the metabolic pathway of acetyl-CoA exerts a great impact in cancer; this process is very different from normal cells due to the “Warburg effect”. The concentration of acetyl-CoA is increased in the mitochondria of cancer cells to provide ATP for survival, hindering the growth of normal cells. Therefore, it may be possible to explore new feasible and more effective treatments through the acetyl-CoA metabolic pathway. In addition, a growing number of studies have shown that abnormal epigenetic modifications have been shown to play contributing roles in cancer formation and development. In most cancers, acetyl-CoA mediated acetylation promotes the growth of cancer cells. Thus, acetylation biomarkers can also be detected and serve as potential cancer prediction and prognostic markers.
Frontiers Media SA
Title: Acetyl-CoA: An interplay between metabolism and epigenetics in cancer
Description:
Due to its high mortality and severe economic burden, cancer has become one of the most difficult medical problems to solve today.
As a key node in metabolism and the main producer of energy, acetyl-coenzyme A (acetyl-CoA) plays an important role in the invasion and migration of cancer.
In this review, we discuss metabolic pathways involving acetyl-CoA, the targeted therapy of cancer through acetyl-CoA metabolic pathways and the roles of epigenetic modifications in cancer.
In particular, we emphasize that the metabolic pathway of acetyl-CoA exerts a great impact in cancer; this process is very different from normal cells due to the “Warburg effect”.
The concentration of acetyl-CoA is increased in the mitochondria of cancer cells to provide ATP for survival, hindering the growth of normal cells.
Therefore, it may be possible to explore new feasible and more effective treatments through the acetyl-CoA metabolic pathway.
In addition, a growing number of studies have shown that abnormal epigenetic modifications have been shown to play contributing roles in cancer formation and development.
In most cancers, acetyl-CoA mediated acetylation promotes the growth of cancer cells.
Thus, acetylation biomarkers can also be detected and serve as potential cancer prediction and prognostic markers.
Related Results
Substrate Stereochemistry of the Acetyl‐CoA Acetyltransferase Reaction
Substrate Stereochemistry of the Acetyl‐CoA Acetyltransferase Reaction
A specimen of symmetrically tritiated 3S‐3‐hydroxy[2‐3H2]butyryl‐CoA was prepared from acetoacetyl‐CoA by incubation in tritiated water, followed by enzymic reduction using 3S‐spec...
e0033 Mechanisms of losartan attenuates ventricular remodelling and cardiac function in aortic banded rats with chronic heart failure
e0033 Mechanisms of losartan attenuates ventricular remodelling and cardiac function in aortic banded rats with chronic heart failure
Objective
To investigate the regulation of Losartan (Los) on ventricular remodelling and cardiac functioning chronic heart failure rats induced by aortic banded.
...
Epigenetics in the public sphere: interdisciplinary perspectives
Epigenetics in the public sphere: interdisciplinary perspectives
AbstractDespite the high public interest in epigenetics, few scholars have empirically investigated the forms, reasons and consequences of the public circulation of epigenetics. Us...
Fetal aortic coarctation: A combination of third-trimester echocardiographic parameters to improve the prediction of postnatal outcome
Fetal aortic coarctation: A combination of third-trimester echocardiographic parameters to improve the prediction of postnatal outcome
ObjectivesThis study aims to determine a combination of third-trimester echocardiographic parameters for improving the prenatal prediction of coarctation of the aorta (CoA) after b...
Characterization of isomeric acetyl amino acids and di‐acetyl amino acids by LC/MS/MS
Characterization of isomeric acetyl amino acids and di‐acetyl amino acids by LC/MS/MS
AbstractAcetylation of amino acids is important in the molecular biology and biochemistry because they are part of several metabolic pathways. N‐acetyl amino acids can form through...
Abstract 1543: Caspase-10 suppresses tumorigenesis by targeting ATP-citrate lyase
Abstract 1543: Caspase-10 suppresses tumorigenesis by targeting ATP-citrate lyase
Abstract
p53 fosters metabolic reprogramming, which restricts metabolic adaptation of tumor cells under energy stress conditions. However, modulation and directional...
Abstract IA-16: Metabolic adaptations in pancreatic cancer
Abstract IA-16: Metabolic adaptations in pancreatic cancer
Abstract
Effective targeting of metabolism for cancer therapy is challenging in part because of extensive flexibility within metabolic pathways. For example, the enz...
An Approach to Include the Effects of Plasticity in the Calculation of Crack Opening Areas for Through-Wall Cracks Subject to Combined Primary and Secondary Loading
An Approach to Include the Effects of Plasticity in the Calculation of Crack Opening Areas for Through-Wall Cracks Subject to Combined Primary and Secondary Loading
Abstract
The work presented within this paper looks at estimates of crack opening area (COA) under elastic-plastic material conditions.
Developing lea...

