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JCS ePress online publication date 21 Apr 2009
doi: 10.1242/jcs.047894


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Short Report

Participation of the lipoprotein receptor LRP1 in hypoxia-HSP90{alpha} autocrine signaling to promote keratinocyte migration


David T. Woodley, Jianhua Fan, Chieh-Fang Cheng, Yong Li, Mei Chen, Guojun Bu, and Wei Li*
* Author for correspondence (e-mail: wli{at}usc.edu)

Hypoxia is a microenvironmental stress in many pathological conditions, including wound healing and tumor invasion. Under hypoxia, the cells are forced to adapt alternative and self-supporting mechanisms. Understanding these mechanisms may lead to new insights into human disorders. We report here a novel autocrine signaling mechanism by which hypoxia promotes human keratinocyte (HK) migration. First, hypoxia triggers HKs to secrete heat shock protein 90-alpha (HSP90{alpha}) via a HIF1-dependent pathway. The secreted HSP90{alpha} in turn promotes migration, but not proliferation, of the cells. Disruption of the secretion or extracellular function of hsp90{alpha} blocked hypoxia-stimulated HK migration. The ubiquitously expressed surface receptor, LRP1 (LDL-receptor-related protein 1), mediates the HSP90{alpha} signaling. Inhibition of LRP1 binding to extracellular HSP90{alpha} by neutralizing antibodies or genetic silencing of the LRP1 receptor by RNAi completely nullified hypoxia-driven HK migration. Finally, re-introducing a RNAi-resistant LRP1 cDNA into LRP1-downregulated HKs rescued the motogenic response of the cells to hypoxia. We propose that the hypoxia-HSP90{alpha}-LRP1 autocrine loop provides previously unrecognized therapeutic targets for human disorders such as chronic wounds and cancer invasion.


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