Literature DB >> 17051644

Proteomic identification of a novel isoform of collapsin response mediator protein-2 in spinal nerves peripheral to dorsal root ganglia.

Tayo Katano1, Tamaki Mabuchi, Emiko Okuda-Ashitaka, Naoyuki Inagaki, Tomoya Kinumi, Seiji Ito.   

Abstract

Primary afferent fibers are originated from pseudounipolar sensory cells in dorsal root ganglia (DRG) and transmit external stimuli received in the skin to the spinal cord. Here we undertook a proteomic approach to uncover the polarity of primary afferent fibers. Lumbar spinal nerve segments, peripheral and central to DRG, were dissected from 5-wk-old Wistar rats and the lysates were subjected to large-sized 2-DE at pH 5-6. Among approximately 800 protein spots detected in the central and peripheral fractions, one of the unique spots in the peripheral fraction with MW of 60 kDa and pI of 5.6 was identified as an isoform of collapsin response mediator protein-2 (CRMP-2) by MALDI-TOF MS and Western blots with anti-CRMP-2 antibodies that recognize 1-17 and 486-528 residues. Since this novel spot was detected only in the peripheral fraction, but not in the central fraction, DRG, and other regions of the brain, it was named periCRMP-2. The C-terminal fragment of CRMP-2 was not detected in periCRMP-2 by MS analyses. Expression of periCRMP-2 decreased following sciatic nerve injury. These results suggest that periCRMP-2 is a C-terminal truncated isoform polarized in the peripheral side of spinal nerves and may be involved in nerve degeneration and regeneration.

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Year:  2006        PMID: 17051644     DOI: 10.1002/pmic.200600300

Source DB:  PubMed          Journal:  Proteomics        ISSN: 1615-9853            Impact factor:   3.984


  11 in total

Review 1.  Neuroproteomics approaches to decipher neuronal regeneration and degeneration.

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Journal:  Mol Cell Proteomics       Date:  2009-12-17       Impact factor: 5.911

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3.  Mass Spectrometry Imaging and GC-MS Profiling of the Mammalian Peripheral Sensory-Motor Circuit.

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Review 4.  Neuronal networks in mental diseases and neuropathic pain: Beyond brain derived neurotrophic factor and collapsin response mediator proteins.

Authors:  Tam T Quach; Jessica K Lerch; Jerome Honnorat; Rajesh Khanna; Anne-Marie Duchemin
Journal:  World J Psychiatry       Date:  2016-03-22

5.  2020 Foresight: Envisioning Therapeutic Innovations for Pain.

Authors:  May Hamza; Raymond A Dionne
Journal:  Drug Discov Today Ther Strateg       Date:  2009

6.  Tat-collapsin response mediator protein 2 (CRMP2) increases the survival of neurons after NMDA excitotoxity by reducing the cleavage of CRMP2.

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Journal:  Neurochem Res       Date:  2013-08-02       Impact factor: 3.996

7.  Identification and structural analysis of C-terminally truncated collapsin response mediator protein-2 in a murine model of prion diseases.

Authors:  Fumiko Shinkai-Ouchi; Yoshio Yamakawa; Hideyuki Hara; Minoru Tobiume; Masahiro Nishijima; Kentaro Hanada; Ken'ichi Hagiwara
Journal:  Proteome Sci       Date:  2010-10-20       Impact factor: 2.480

8.  Neuroproteomics and Systems Biology Approach to Identify Temporal Biomarker Changes Post Experimental Traumatic Brain Injury in Rats.

Authors:  Firas H Kobeissy; Joy D Guingab-Cagmat; Zhiqun Zhang; Ahmed Moghieb; Olena Y Glushakova; Stefania Mondello; Angela M Boutté; John Anagli; Richard Rubenstein; Hisham Bahmad; Amy K Wagner; Ronald L Hayes; Kevin K W Wang
Journal:  Front Neurol       Date:  2016-11-22       Impact factor: 4.003

9.  Involvement of S-nitrosylation of actin in inhibition of neurotransmitter release by nitric oxide.

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Journal:  Mol Pain       Date:  2009-09-29       Impact factor: 3.395

10.  Detection of autoantibodies against heat shock proteins and collapsin response mediator proteins in autoimmune retinopathy.

Authors:  Grazyna Adamus; Robert Bonnah; Lori Brown; Larry David
Journal:  BMC Ophthalmol       Date:  2013-09-25       Impact factor: 2.209

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