Literature DB >> 25597360

Raf kinase inhibitory protein (RKIP): functional pleiotropy in the mammalian brain.

Harrod H Ling1, Lucia Mendoza-Viveros1, Neel Mehta1, Hai-Ying M Cheng1.   

Abstract

In 1984, a cytosolic protein was isolated from bovine brain and coined phosphatidylethanolamine binding protein (PEBP) to describe its phospholipid-binding potential. Its cellular function remained elusive for more than a decade until it was discovered that PEBP had the ability to suppress the Raf1-mitogen activated protein kinase (MAPK) pathway, earning it the new name of Raf1 kinase inhibitory protein (RKIP). This milestone discovery has paved the way for numerous studies that have now extended the reach of RKIP's function to other signaling cascades, within the context of various physiological and pathophysiological systems. This review will summarize our current knowledge of the neurophysiological roles of RKIP in the mammalian brain, including its function in the circadian clock and synaptic plasticity. It will also discuss evidence for an involvement of RKIP and its derived neuropeptide, hippocampal cholinergic neurostimulating peptide (HCNP), in neural development and differentiation. Implications in certain pathologies such as Alzheimer's disease and brain cancer will be highlighted. By chronicling the diverse functions of RKIP in the brain, we hope that this review will serve as a timely resource that ignites future studies on this versatile, multifaceted protein in the nervous system.

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Year:  2014        PMID: 25597360      PMCID: PMC4767416          DOI: 10.1615/critrevoncog.2014011899

Source DB:  PubMed          Journal:  Crit Rev Oncog        ISSN: 0893-9675


  80 in total

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Journal:  Brain Res Bull       Date:  2006-12-11       Impact factor: 4.077

2.  Snail is a repressor of RKIP transcription in metastatic prostate cancer cells.

Authors:  S Beach; H Tang; S Park; A S Dhillon; E T Keller; W Kolch; K C Yeung
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3.  Ca2+/cAMP response element-binding protein (CREB)-dependent activation of Per1 is required for light-induced signaling in the suprachiasmatic nucleus circadian clock.

Authors:  Shelley A Tischkau; Jennifer W Mitchell; Sheue-Houy Tyan; Gordon F Buchanan; Martha U Gillette
Journal:  J Biol Chem       Date:  2002-10-29       Impact factor: 5.157

4.  Purification and structural analysis of hippocampal cholinergic neurostimulating peptide.

Authors:  K Ojika; S Kojima; Y Ueki; N Fukushima; K Hayashi; M Yamamoto
Journal:  Brain Res       Date:  1992-02-14       Impact factor: 3.252

5.  Raf kinase inhibitor protein interacts with NF-kappaB-inducing kinase and TAK1 and inhibits NF-kappaB activation.

Authors:  K C Yeung; D W Rose; A S Dhillon; D Yaros; M Gustafsson; D Chatterjee; B McFerran; J Wyche; W Kolch; J M Sedivy
Journal:  Mol Cell Biol       Date:  2001-11       Impact factor: 4.272

6.  Raf kinase inhibitor protein enhances neuronal differentiation in human SH-SY5Y cells.

Authors:  Julian Hellmann; Hans Rommelspacher; Eckhard Mühlbauer; Catrin Wernicke
Journal:  Dev Neurosci       Date:  2009-12-03       Impact factor: 2.984

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8.  Decreased hippocampal cholinergic neurostimulating peptide precursor protein associated with stress exposure in rat brain by proteomic analysis.

Authors:  Hong Gi Kim; Kil Lyong Kim
Journal:  J Neurosci Res       Date:  2007-10       Impact factor: 4.164

Review 9.  A century of Alzheimer's disease.

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Journal:  J Neurochem       Date:  2007-12-18       Impact factor: 5.372

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6.  Raf kinase inhibitor protein regulates oxygen-glucose deprivation-induced PC12 cells apoptosis through the NF-κB and ERK pathways.

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7.  β-Secretase 1's Targeting Reduces Hyperphosphorilated Tau, Implying Autophagy Actors in 3xTg-AD Mice.

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  7 in total

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