## Abstract TGF‐β (transforming growth factor‐beta) plays a key role in osteoblast differentiation and bone development. While the ability of TGF‐β to inhibit the expression of osteoblast differentiation genes has been well documented, the mechanism of this inhibition is not yet completely characte
Inhibition of G1 phase cyclin dependent kinases by transforming growth factor β1
✍ Scribed by Kumar B. Reddy; Barbara A. Hocevar; Philip H. Howe
- Publisher
- John Wiley and Sons
- Year
- 1994
- Tongue
- English
- Weight
- 785 KB
- Volume
- 56
- Category
- Article
- ISSN
- 0730-2312
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Transforming growth factor β1 (TGFβ1) inhibits epithelial cell proliferation late in the G1 phase of the cell cycle. We examined the effect of TGFβ1 on known late G1 cell cycle regulators in an attempt to determine the molecular mechanism of growth inhibition by this physiological inhibitor. The results demonstrate the TGFβ1 inhibits the late G1 and S phase specific histone H1 kinase activity of p33^cdk2^. This inhibitiion is not dur to TGFβ1's effect on p33^cdk2^ synthesis, but rather due to its negative effect on the late G1 phosphorylation of p33^cdk2^. It is also shown that TGFβ1 inhibits both late G1 cyclin A and cyclin E associated histon H1 kinase activities. The inhibitor has no effects on the synthesis of cyclin E but to inhibit the synthesis of cyclin A protein in a cell cycle dependent manner. If TGFβ1 is added to cells which have progressed futher than 8 hours into G1, then it is without inhibitory effect on cyclin A synthesis. These effect on TGFβ1 on late G1 cell cycle regulators correlate well with its inhibitory effects on cellular growth and suggest that these G1 cyclin dependent kinases might serve as targets for TGFβ1‐mediated growth arrest.
📜 SIMILAR VOLUMES
Lactoferrin inhibits cell proliferation and suppresses tumor growth in vivo. However, the molecular mechanisms underlying these effects remain unknown. In this in vitro study, we demonstrate that treatment of breast carcinoma cells MDA-MB-231 with human lactoferrin induces growth arrest at the G1 to
Transforming growth factor b1 (TGF-b1) belongs to a family of multifunctional modulatory proteins involved in cell growth, differentiation, development, and wound healing. Although the biological activities of TGF-b1 have been extensively studied, its regulation remains obscure. Here we report the e