Abstract Background Cancer cell metabolism requires sustained pools of intracellular nicotinamide adenine dinucleotide (NAD+) which is maintained by a balance of NAD+ hydrolase activity and NAD+ salvage activity. We recently reported that human prostate cancer can be initiated following oncogene expression in progenitor-like luminal cells marked by low expression of the NAD+-consuming enzyme CD38. CD38 expression is reduced in prostate cancer compared to benign prostate, suggesting that tumor cells may reduce CD38 expression in order to enhance pools of NAD+. However, little is known about how CD38 expression is repressed in advanced prostate cancer and whether CD38 plays a role in regulating NAD+ levels in prostate epithelial cells. Method...
A major genomic alteration in prostate cancer (PCa) is frequent loss of chromosome (chr) 8p with a c...
AbstractIn prostate and other epithelial cancers, E-cadherin (CDH1) is downregulated inappropriately...
Effect of CD38 expression on RWPE1, LNCaP and DU145 cell proliferation. (a) RWPE1 cell proliferation...
BackgroundCancer cell metabolism requires sustained pools of intracellular nicotinamide adenine dinu...
Effect of CD38 on expression of enzymes involved in NAD+ metabolism. (a, b) Western blots show expre...
BACKGROUND: CD38, a druggable ectoenzyme, is involved in the generation of adenosine, which is impli...
Inflammation is a risk factor for prostate cancer, but the mechanisms by which inflammation increase...
BACKGROUND CD38, a druggable ectoenzyme, is involved in the generation of adenosine, which is imp...
Re-expression of CD38 in prostate cancer cell lines after treatment with DNA methyltransferase inhib...
CpG hypermethylation of CD38 in prostate cancer cell lines. Related to Fig. 3, methylation heat maps...
Cancer cells fuel growth and energy demands by increasing their NAD+ biosynthesis dependency, which ...
Abstract Background Nc886 is a 102 bp non-coding RNA transcript initially classified as a microRNA p...
Alterations in DNA methylation patterns are associated with many types of cancers. DNA methylation a...
Nicotinamide adenine dinucleotide (NAD) is a coenzyme found in all living cells and mediates multipl...
CD38 (Cluster of Differentiation 38) is a multifunctional ecto-enzyme that metabolizes NAD+ and medi...
A major genomic alteration in prostate cancer (PCa) is frequent loss of chromosome (chr) 8p with a c...
AbstractIn prostate and other epithelial cancers, E-cadherin (CDH1) is downregulated inappropriately...
Effect of CD38 expression on RWPE1, LNCaP and DU145 cell proliferation. (a) RWPE1 cell proliferation...
BackgroundCancer cell metabolism requires sustained pools of intracellular nicotinamide adenine dinu...
Effect of CD38 on expression of enzymes involved in NAD+ metabolism. (a, b) Western blots show expre...
BACKGROUND: CD38, a druggable ectoenzyme, is involved in the generation of adenosine, which is impli...
Inflammation is a risk factor for prostate cancer, but the mechanisms by which inflammation increase...
BACKGROUND CD38, a druggable ectoenzyme, is involved in the generation of adenosine, which is imp...
Re-expression of CD38 in prostate cancer cell lines after treatment with DNA methyltransferase inhib...
CpG hypermethylation of CD38 in prostate cancer cell lines. Related to Fig. 3, methylation heat maps...
Cancer cells fuel growth and energy demands by increasing their NAD+ biosynthesis dependency, which ...
Abstract Background Nc886 is a 102 bp non-coding RNA transcript initially classified as a microRNA p...
Alterations in DNA methylation patterns are associated with many types of cancers. DNA methylation a...
Nicotinamide adenine dinucleotide (NAD) is a coenzyme found in all living cells and mediates multipl...
CD38 (Cluster of Differentiation 38) is a multifunctional ecto-enzyme that metabolizes NAD+ and medi...
A major genomic alteration in prostate cancer (PCa) is frequent loss of chromosome (chr) 8p with a c...
AbstractIn prostate and other epithelial cancers, E-cadherin (CDH1) is downregulated inappropriately...
Effect of CD38 expression on RWPE1, LNCaP and DU145 cell proliferation. (a) RWPE1 cell proliferation...