S100A11, an dual mediator for growth regulation of human keratinocytes

M Sakaguchi, H Sonegawa, H Murata… - Molecular Biology of …, 2008 - Am Soc Cell Biol
M Sakaguchi, H Sonegawa, H Murata, M Kitazoe, J Futami, K Kataoka, H Yamada, N Huh
Molecular Biology of the Cell, 2008Am Soc Cell Biol
We previously revealed a novel signal pathway involving S100A11 for inhibition of the
growth of normal human keratinocytes (NHK) caused by high Ca++ or transforming growth
factor β. Exposure to either agent resulted in transfer of S100A11 to nuclei, where it induced
p21WAF1. In contrast, S100A11 has been shown to be overexpressed in many human
cancers. To address this apparent discrepancy, we analyzed possible new functions of
S100A11, and we provide herein evidence that 1) S100A11 is actively secreted by NHK; 2) …
We previously revealed a novel signal pathway involving S100A11 for inhibition of the growth of normal human keratinocytes (NHK) caused by high Ca++ or transforming growth factor β. Exposure to either agent resulted in transfer of S100A11 to nuclei, where it induced p21WAF1. In contrast, S100A11 has been shown to be overexpressed in many human cancers. To address this apparent discrepancy, we analyzed possible new functions of S100A11, and we provide herein evidence that 1) S100A11 is actively secreted by NHK; 2) extracellular S100A11 acts on NHK to enhance the production of epidermal growth factor family proteins, resulting in growth stimulation; 3) receptor for advanced glycation end products, nuclear factor-κB, Akt, and cAMP response element-binding protein are involved in the S100A11-triggered signal transduction; and 4) production and secretion of S100A11 are markedly enhanced in human squamous cancer cells. These findings indicate that S100A11 plays a dual role in growth regulation of epithelial cells.
Am Soc Cell Biol