Literature DB >> 26374065

Band-pass processing in a GPCR signaling pathway selects for NFAT transcription factor activation.

M Sumit1, R R Neubig2, S Takayama3, J J Linderman4.   

Abstract

Many biological processes are rhythmic and proper timing is increasingly appreciated as being critical for development and maintenance of physiological functions. To understand how temporal modulation of an input signal influences downstream responses, we employ microfluidic pulsatile stimulation of a G-protein coupled receptor, the muscarinic M3 receptor, in single cells with simultaneous real-time imaging of both intracellular calcium and NFAT nuclear localization. Interestingly, we find that reduced stimulation with pulses of ligand can give more efficient transcription factor activation, if stimuli are timed appropriately. Our experiments and computational analyses show that M3 receptor-induced calcium oscillations form a low pass filter while calcium-induced NFAT translocation forms a high pass filter. The combination acts as a band-pass filter optimized for intermediate frequencies of stimulation. We demonstrate that receptor desensitization and NFAT translocation rates determine critical features of the band-pass filter and that the band-pass may be shifted for different receptors or NFAT dynamics. As an example, we show that the two NFAT isoforms (NFAT4 and NFAT1) have shifted band-pass windows for the same receptor. While we focus specifically on the M3 muscarinic receptor and NFAT translocation, band-pass processing is expected to be a general theme that applies to multiple signaling pathways.

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Year:  2015        PMID: 26374065      PMCID: PMC4630096          DOI: 10.1039/c5ib00181a

Source DB:  PubMed          Journal:  Integr Biol (Camb)        ISSN: 1757-9694            Impact factor:   2.192


  46 in total

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3.  Dynamic response diversity of NFAT isoforms in individual living cells.

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Review 4.  Muscarinic acetylcholine receptors: novel opportunities for drug development.

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6.  NFAT functions as a working memory of Ca2+ signals in decoding Ca2+ oscillation.

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10.  Microfluidic interrogation and mathematical modeling of multi-regime calcium signaling dynamics.

Authors:  Andreja Jovic; Susan M Wade; Richard R Neubig; Jennifer J Linderman; Shuichi Takayama
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Review 3.  New insights into mammalian signaling pathways using microfluidic pulsatile inputs and mathematical modeling.

Authors:  M Sumit; S Takayama; J J Linderman
Journal:  Integr Biol (Camb)       Date:  2017-01-23       Impact factor: 2.192

4.  Computing Mathematical Functions using DNA via Fractional Coding.

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6.  Selective Photoswitchable Allosteric Agonist of a G Protein-Coupled Receptor.

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7.  Gene expression patterns in synchronized islet populations.

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  7 in total

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