Abstract

Overexpression of the inducible heat shock protein 70, Hsp72, has broadly cytoprotective effects and improves outcome following stroke. A full understanding of how Hsp72 protects cells against injury is elusive, though several distinct mechanisms are implicated. One mechanism is its anti-inflammatory effects. We study the effects of Hsp72 overexpression on activation of the transcription factor NF-κB in microglia combining experimentation and mathematical modeling, using TNFα to stimulate a microglial cell line stably overexpressing Hsp72. We find that Hsp72 overexpression reduces the amount of NF-κB DNA binding activity, activity of the upstream kinase IKK, and amount of IκBα inhibitor phosphorylated following TNFα application. Simulations evaluating several proposed mechanisms suggest that inhibition of IKK activation is an essential component of its regulatory activities. Unexpectedly we find that Hsp72 overexpression reduces the initial amount of the RelA/p65 NF-κB subunit in cells, contributing to the attenuated response. Neither mechanism in isolation, however, is sufficient to attenuate the response, providing evidence that Hsp72 relies upon multiple mechanisms to attenuate NF-κB activation. An additional observation from our study is that the induced expression of IκBα is altered significantly in Hsp72 expressing cells. While the mechanism responsible for this observation is not known, it points to yet another means by which Hsp72 may alter the NF-κB response. This study illustrates the multi-faceted nature of Hsp72 regulation of NF-κB activation in microglia and offers further clues to a novel mechanism by which Hsp72 may protect cells against injury.

Highlights

  • Hsp72 is the major cytosolic inducible form of the 70 kDa family of heat shock proteins (HSP70)

  • We examine Nuclear Factor kB (NF-kB) signaling in microglia cells overexpressing Hsp72, combining experimentation and mathematical modeling

  • We show that Hsp72 affects signaling using at least two essential and distinct mechanisms: attenuation of upstream kinase (IKK) activity and reduction of steady state NF-kB protein levels

Read more

Summary

Introduction

Hsp is the major cytosolic inducible form of the 70 kDa family of heat shock proteins (HSP70). Overexpression of Hsp is known to protect cells from injury and is positively associated with outcome in models of stroke [1,2,3,4,5]. Besides the role it plays as a molecular chaperone, Hsp is an important mediator in intracellular signaling including inflammatory and cell death signaling [6]. Activation of microglia following stroke with production of numerous signaling and immune modulatory proteins downstream of NF-kB make microglia important potential targets for therapeutic intervention [8,9]. NF-kB activation in microglia is attenuated when cells overexpress Hsp72 [6,10], suggesting that Hsp attenuation of NF-kB activation may be a key contributor to cytoprotection

Methods
Results
Discussion
Conclusion
Full Text
Published version (Free)

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call