Literature DB >> 25253692

Increased spinal cord Na⁺-K⁺-2Cl⁻ cotransporter-1 (NKCC1) activity contributes to impairment of synaptic inhibition in paclitaxel-induced neuropathic pain.

Shao-Rui Chen1, Lihong Zhu1, Hong Chen1, Lei Wen1, Geoffroy Laumet1, Hui-Lin Pan2.   

Abstract

Microtubule-stabilizing agents, such as paclitaxel (Taxol), are effective chemotherapy drugs for treating many cancers, and painful neuropathy is a major dose-limiting adverse effect. Cation-chloride cotransporters, such as Na(+)-K(+)-2Cl(-) cotransporter-1 (NKCC1) and K(+)-Cl(-) cotransporter-2 (KCC2), critically influence spinal synaptic inhibition by regulating intracellular chloride concentrations. Here we show that paclitaxel treatment in rats significantly reduced GABA-induced membrane hyperpolarization and caused a depolarizing shift in GABA reversal potential of dorsal horn neurons. However, paclitaxel had no significant effect on AMPA or NMDA receptor-mediated glutamatergic input from primary afferents to dorsal horn neurons. Paclitaxel treatment significantly increased protein levels, but not mRNA levels, of NKCC1 in spinal cords. Inhibition of NKCC1 with bumetanide reversed the paclitaxel effect on GABA-mediated hyperpolarization and GABA reversal potentials. Also, intrathecal bumetanide significantly attenuated hyperalgesia and allodynia induced by paclitaxel. Co-immunoprecipitation revealed that NKCC1 interacted with β-tubulin and β-actin in spinal cords. Remarkably, paclitaxel increased NKCC1 protein levels at the plasma membrane and reduced NKCC1 levels in the cytosol of spinal cords. In contrast, treatment with an actin-stabilizing agent had no significant effect on NKCC1 protein levels in the plasma membrane or cytosolic fractions of spinal cords. In addition, inhibition of the motor protein dynein blocked paclitaxel-induced subcellular redistribution of NKCC1, whereas inhibition of kinesin-5 mimicked the paclitaxel effect. Our findings suggest that increased NKCC1 activity contributes to diminished spinal synaptic inhibition and neuropathic pain caused by paclitaxel. Paclitaxel disrupts intracellular NKCC1 trafficking by interfering with microtubule dynamics and associated motor proteins.
© 2014 by The American Society for Biochemistry and Molecular Biology, Inc.

Entities:  

Keywords:  Chloride Transport; GABA Receptor; Neuroscience; Neurotransmitter; Neurotransmitter Receptor; Pain; Synaptic Plasticity; Trafficking

Mesh:

Substances:

Year:  2014        PMID: 25253692      PMCID: PMC4223315          DOI: 10.1074/jbc.M114.600320

Source DB:  PubMed          Journal:  J Biol Chem        ISSN: 0021-9258            Impact factor:   5.157


  60 in total

1.  Translocation and clustering of endosomes and lysosomes depends on microtubules.

Authors:  R Matteoni; T E Kreis
Journal:  J Cell Biol       Date:  1987-09       Impact factor: 10.539

2.  A painful peripheral neuropathy in the rat produced by the chemotherapeutic drug, paclitaxel.

Authors:  Rosemary C Polomano; Andrew J Mannes; Uraina S Clark; Gary J Bennett
Journal:  Pain       Date:  2001-12       Impact factor: 6.961

3.  Deafness and imbalance associated with inactivation of the secretory Na-K-2Cl co-transporter.

Authors:  E Delpire; J Lu; R England; C Dull; T Thorne
Journal:  Nat Genet       Date:  1999-06       Impact factor: 38.330

Review 4.  Peripheral neuropathy induced by microtubule-stabilizing agents.

Authors:  James J Lee; Sandra M Swain
Journal:  J Clin Oncol       Date:  2006-04-01       Impact factor: 44.544

5.  Calcium-induced actin depolymerization reduces NMDA channel activity.

Authors:  C Rosenmund; G L Westbrook
Journal:  Neuron       Date:  1993-05       Impact factor: 17.173

6.  Jasplakinolide: an actin-specific reagent that promotes actin polymerization.

Authors:  Andreas Holzinger
Journal:  Methods Mol Biol       Date:  2009

7.  Quantitative assessment of tactile allodynia in the rat paw.

Authors:  S R Chaplan; F W Bach; J W Pogrel; J M Chung; T L Yaksh
Journal:  J Neurosci Methods       Date:  1994-07       Impact factor: 2.390

8.  Up-regulation of spinal muscarinic receptors and increased antinociceptive effect of intrathecal muscarine in diabetic rats.

Authors:  Shao-Rui Chen; Hui-Lin Pan
Journal:  J Pharmacol Exp Ther       Date:  2003-09-09       Impact factor: 4.030

9.  N-methyl-D-aspartate receptor- and calpain-mediated proteolytic cleavage of K+-Cl- cotransporter-2 impairs spinal chloride homeostasis in neuropathic pain.

Authors:  Hong-Yi Zhou; Shao-Rui Chen; Hee-Sun Byun; Hong Chen; Li Li; Hee-Dong Han; Gabriel Lopez-Berestein; Anil K Sood; Hui-Lin Pan
Journal:  J Biol Chem       Date:  2012-08-01       Impact factor: 5.157

10.  Kinesin-5 regulates the growth of the axon by acting as a brake on its microtubule array.

Authors:  Kenneth A Myers; Peter W Baas
Journal:  J Cell Biol       Date:  2007-09-10       Impact factor: 10.539

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  22 in total

1.  Chloride Homeostasis Critically Regulates Synaptic NMDA Receptor Activity in Neuropathic Pain.

Authors:  Lingyong Li; Shao-Rui Chen; Hong Chen; Lei Wen; Walter N Hittelman; Jing-Dun Xie; Hui-Lin Pan
Journal:  Cell Rep       Date:  2016-05-05       Impact factor: 9.423

2.  Increased α2δ-1-NMDA receptor coupling potentiates glutamatergic input to spinal dorsal horn neurons in chemotherapy-induced neuropathic pain.

Authors:  Youfang Chen; Shao-Rui Chen; Hong Chen; Jixiang Zhang; Hui-Lin Pan
Journal:  J Neurochem       Date:  2018-12-21       Impact factor: 5.372

3.  Blocking the GABA transporter GAT-1 ameliorates spinal GABAergic disinhibition and neuropathic pain induced by paclitaxel.

Authors:  Ruchi Yadav; Xisheng Yan; Dylan W Maixner; Mei Gao; Han-Rong Weng
Journal:  J Neurochem       Date:  2015-04-23       Impact factor: 5.372

4.  Nerve Injury-Induced Chronic Pain Is Associated with Persistent DNA Methylation Reprogramming in Dorsal Root Ganglion.

Authors:  Judit Garriga; Geoffroy Laumet; Shao-Rui Chen; Yuhao Zhang; Jozef Madzo; Jean-Pierre J Issa; Hui-Lin Pan; Jaroslav Jelinek
Journal:  J Neurosci       Date:  2018-06-06       Impact factor: 6.167

Review 5.  Presynaptic NMDA receptors control nociceptive transmission at the spinal cord level in neuropathic pain.

Authors:  Meichun Deng; Shao-Rui Chen; Hui-Lin Pan
Journal:  Cell Mol Life Sci       Date:  2019-02-20       Impact factor: 9.261

6.  Polyester Nanoparticle Encapsulation Mitigates Paclitaxel-Induced Peripheral Neuropathy.

Authors:  R Ganugula; M Deng; M Arora; H-L Pan; M N V Ravi Kumar
Journal:  ACS Chem Neurosci       Date:  2019-01-17       Impact factor: 4.418

7.  Presynaptic N-Methyl-d-aspartate (NMDA) Receptor Activity Is Increased Through Protein Kinase C in Paclitaxel-induced Neuropathic Pain.

Authors:  Jing-Dun Xie; Shao-Rui Chen; Hong Chen; Wei-An Zeng; Hui-Lin Pan
Journal:  J Biol Chem       Date:  2016-07-25       Impact factor: 5.157

8.  Presynaptic mGluR5 receptor controls glutamatergic input through protein kinase C-NMDA receptors in paclitaxel-induced neuropathic pain.

Authors:  Jing-Dun Xie; Shao-Rui Chen; Hui-Lin Pan
Journal:  J Biol Chem       Date:  2017-10-26       Impact factor: 5.157

9.  Nerve growth factor alters microtubule targeting agent-induced neurotransmitter release but not MTA-induced neurite retraction in sensory neurons.

Authors:  Sherry K Pittman; Neilia G Gracias; Jill C Fehrenbacher
Journal:  Exp Neurol       Date:  2016-02-13       Impact factor: 5.330

10.  Chronic Unpredictable Mild Stress Induces Loss of GABA Inhibition in Corticotrophin-Releasing Hormone-Expressing Neurons through NKCC1 Upregulation.

Authors:  Yonggang Gao; Jing-Jing Zhou; Yun Zhu; Therese Kosten; De-Pei Li
Journal:  Neuroendocrinology       Date:  2016-04-15       Impact factor: 4.914

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