𝔖 Bobbio Scriptorium
✦   LIBER   ✦

Induction of caspase-mediated apoptosis and cell-cycle G1 arrest by selenium metabolite methylselenol

✍ Scribed by Zaisen Wang; Cheng Jiang; Junxuan Lü


Publisher
John Wiley and Sons
Year
2002
Tongue
English
Weight
289 KB
Volume
34
Category
Article
ISSN
0899-1987

No coin nor oath required. For personal study only.

✦ Synopsis


Previous work based on mono-methyl selenium compounds that are putative precursors of methylselenol has strongly implicated this metabolite in the induction of caspase-mediated apoptosis of human prostate carcinoma and leukemia cells and G1 arrest in human vascular endothelial and cancer epithelial cells. To test the hypothesis that methylselenol itself is responsible for exerting these cellular effects, we examined the apoptotic action on DU145 human prostate cancer cells and the G1 arrest effect on the human umbilical vein endothelial cells (HUVECs) of methylselenol generated with seleno-L-methionine as a substrate for L-methionine-alpha-deamino-gamma-mercaptomethane lyase (EC4.4.1.11, also known as methioninase). Exposure of DU145 cells to methylselenol so generated in the sub-micromolar range led to caspase-mediated cleavage of poly(ADP-ribose) polymerase, nucleosomal DNA fragmentation, and morphologic apoptosis and resulted in a profile of biochemical effects similar to that of methylseleninic acid (MSeA) exposure as exemplified by the inhibition of phosphorylation of protein kinase AKT and extracellularly regulated kinases 1/2. In HUVEC, methylselenol exposure recapitulated the G1 arrest action of MSeA in mitogen-stimulated G1 progression during mid-G1 to late G1. This stage specificity was mimicked by inhibitors of phosphatidylinositol 3-kinase. The results support methylselenol as an active selenium metabolite for inducing caspase-mediated apoptosis and cell-cycle G1 arrest. This cell-free methylselenol-generation system is expected to have significant usefulness for studying the biochemical and molecular targeting mechanisms of this critical metabolite and may constitute the basis of a novel therapeutic approach for cancer, using seleno-L-methionine as a prodrug.


📜 SIMILAR VOLUMES


Induction of p21/WAF1 and G1 cell-cycle
✍ Denise M. Lepley; Jill C. Pelling 📂 Article 📅 1997 🏛 John Wiley and Sons 🌐 English ⚖ 111 KB

Apigenin is a plant flavonoid that has been shown to significantly inhibit ultraviolet-induced mouse skin tumorigenesis when applied topically and may be an alternative sunscreen agent for humans. A long-term goal of our laboratory is to elucidate the molecular mechanism or mechanisms by which apige

Induction of G1 cell cycle arrest and P1
✍ Nianxi Zhao; Jianbo Wang; Yongping Cui; Liping Guo; Shih-Hsin Lu 📂 Article 📅 2004 🏛 John Wiley and Sons 🌐 English ⚖ 302 KB

## Abstract __ECRG1__ is a novel candidate of tumor suppressor gene identified from human esophagus. To study the biological role of __ECRG1__ gene, we performed a GAL4‐based yeast two‐hybrid screen of a human fetal liver cDNA library. Using the ECRG1 cDNA as bait, we identified two putative clones

Molecular mechanisms of G0/G1 cell-cycle
✍ Jean-Dean Liu; Ying-Jan Wang; Chien-Ho Chen; Cheng-Fei Yu; Li-Ching Chen; Jen-Ku 📂 Article 📅 2003 🏛 John Wiley and Sons 🌐 English ⚖ 439 KB

Terfenadine (TF), a highly potent histamine H1 receptor antagonist, has been shown to exert no significant central nervous system side effects in clinically effective doses. In this study, we demonstrated that TF induced significant growth inhibition of human cancer cells, including Hep G2, HT 29, a