Literature DB >> 21452223

A specific antibody to neuropeptide AF1 (KNEFIRFamide) recognizes a small subset of neurons in Ascaris suum: differences from Caenorhabditis elegans.

Paisarn Sithigorngul1, Jessica L Jarecki, Antony O W Stretton.   

Abstract

A monoclonal antibody, AF1-003, highly specific to the Ascaris suum neuropeptide AF1 (KNEFIRFamide), was generated. This antibody binds strongly to AF1 and extremely weakly to other peptides with C-terminal FIRFamide: AF5 (SGKPTFIRFamide), AF6 (FIRFamide), and AF7 (AGPRFIRFamide). It does not recognize 35 other AF (A. suum FMRFamide-like) peptides at the highest concentration tested, nor does it recognize FMRFamide. When crude peptide extracts of A. suum are fractionated by two-step HPLC, the only fractions recognized by AF1-003 are those comigrating with synthetic AF1. By immunocytochemistry, antibody AF1-003 recognizes a small subset of the 298 neurons of A. suum: these include the paired URX and RIP neurons, two pairs of lateral ganglion neurons in the head, and the unpaired PQR and PDA or -B tail neurons that send processes to the head along the dorsal and ventral nerve cords, respectively. AF1 immunoreactivity is also seen in three pairs of pharyngeal neurons. Mass spectroscopy (MS) shows the presence of AF1 in the head, pharynx, and dorsal and ventral nerve cords. In A. suum, the neurons that contain AF1 show little overlap with neurons that express green fluorescent protein constructs targeting the flp-8 gene, which encodes AF1 in Caenorhabditis elegans (Kim and Li [2004] J. Comp. Neurol. 475:540-550); the URX neurons express AF1 in both species, but, in C. elegans, flp-8 expression was not detected in RIP, PQR, and PDA or -B or in the pharynx. Other, less specific monoclonal antibodies recognize AF1, as well as other peptides to differing degrees; these antibodies are useful reagents for determination of neuronal morphology.
Copyright © 2010 Wiley-Liss, Inc.

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Year:  2011        PMID: 21452223      PMCID: PMC4769036          DOI: 10.1002/cne.22584

Source DB:  PubMed          Journal:  J Comp Neurol        ISSN: 0021-9967            Impact factor:   3.215


  42 in total

1.  Direct tissue analysis using matrix-assisted laser desorption/ionization mass spectrometry: practical aspects of sample preparation.

Authors:  Sarah A Schwartz; Michelle L Reyzer; Richard M Caprioli
Journal:  J Mass Spectrom       Date:  2003-07       Impact factor: 1.982

2.  A versatile dot-ELISA method with femtomole sensitivity for detecting small peptides.

Authors:  P Sithigorngul; A O Stretton; C Cowden
Journal:  J Immunol Methods       Date:  1991-07-26       Impact factor: 2.303

3.  Neuropeptide diversity in Ascaris: an immunocytochemical study.

Authors:  P Sithigorngul; A O Stretton; C Cowden
Journal:  J Comp Neurol       Date:  1990-04-15       Impact factor: 3.215

4.  Identification of neuropeptide-like protein gene families in Caenorhabditiselegans and other species.

Authors:  A N Nathoo; R A Moeller; B A Westlund; A C Hart
Journal:  Proc Natl Acad Sci U S A       Date:  2001-11-20       Impact factor: 11.205

Review 5.  FMRFamide-related neuropeptide gene family in Caenorhabditis elegans.

Authors:  C Li; K Kim; L S Nelson
Journal:  Brain Res       Date:  1999-11-27       Impact factor: 3.252

6.  GABA-immunoreactivity in inhibitory motor neurons of the nematode Ascaris.

Authors:  C D Johnson; A O Stretton
Journal:  J Neurosci       Date:  1987-01       Impact factor: 6.167

7.  Mapping neuropeptide expression by mass spectrometry in single dissected identified neurons from the dorsal ganglion of the nematode Ascaris suum.

Authors:  Jessica L Jarecki; Kari Andersen; Christopher J Konop; Jennifer J Knickelbine; Martha M Vestling; Antony O Stretton
Journal:  ACS Chem Neurosci       Date:  2010-07-21       Impact factor: 4.418

8.  De novo sequencing of novel neuropeptides directly from Ascaris suum tissue using matrix-assisted laser desorption/ionization time-of-flight/time-of-flight.

Authors:  Joanne Y Yew; Sergei Dikler; Antony O Stretton
Journal:  Rapid Commun Mass Spectrom       Date:  2003       Impact factor: 2.419

9.  AF1, a sequenced bioactive neuropeptide isolated from the nematode Ascaris suum.

Authors:  C Cowden; A O Stretton; R E Davis
Journal:  Neuron       Date:  1989-05       Impact factor: 17.173

10.  The primary structure of TE-6: a novel neuropeptide from the nematode Ascaris suum.

Authors:  D Smart; C Shaw; W J Curry; C F Johnston; L Thim; D W Halton; K D Buchanan
Journal:  Biochem Biophys Res Commun       Date:  1992-09-30       Impact factor: 3.575

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  9 in total

1.  Different Bioactive Neuropeptides are Expressed in Two Sub-Classes of GABAergic RME Nerve Ring Motorneurons in Ascaris suum.

Authors:  Jennifer J Knickelbine; Christopher J Konop; India R Viola; Colette B Rogers; Lynn A Messinger; Martha M Vestling; Antony O W Stretton
Journal:  ACS Chem Neurosci       Date:  2018-02-13       Impact factor: 4.418

2.  Different neuropeptides are expressed in different functional subsets of cholinergic excitatory motorneurons in the nematode Ascaris suum.

Authors:  Christopher J Konop; Jennifer J Knickelbine; Molly S Sygulla; Martha M Vestling; Antony O W Stretton
Journal:  ACS Chem Neurosci       Date:  2015-04-09       Impact factor: 4.418

Review 3.  Monoaminergic signaling as a target for anthelmintic drug discovery: receptor conservation among the free-living and parasitic nematodes.

Authors:  Richard Komuniecki; Wen Jing Law; Aaron Jex; Peter Geldhof; John Gray; Bruce Bamber; Robin B Gasser
Journal:  Mol Biochem Parasitol       Date:  2012-02-11       Impact factor: 1.759

4.  Changes in cyclic nucleotides, locomotory behavior, and body length produced by novel endogenous neuropeptides in the parasitic nematode Ascaris suum.

Authors:  Catharine A Reinitz; Anthony E Pleva; Antony O W Stretton
Journal:  Mol Biochem Parasitol       Date:  2011-08-10       Impact factor: 1.759

5.  Mass spectrometric evaluation of neuropeptidomic profiles upon heat stabilization treatment of neuroendocrine tissues in crustaceans.

Authors:  Robert M Sturm; Tyler Greer; Nicole Woodards; Erin Gemperline; Lingjun Li
Journal:  J Proteome Res       Date:  2013-01-02       Impact factor: 4.466

6.  Three independent techniques localize expression of transcript afp-11 and its bioactive peptide products to the paired AVK neurons in Ascaris suum: in situ hybridization, immunocytochemistry, and single cell mass spectrometry.

Authors:  Jessica L Jarecki; India R Viola; Kari M Andersen; Andrew H Miller; Megan A Ramaker; Martha M Vestling; Antony O Stretton
Journal:  ACS Chem Neurosci       Date:  2012-12-27       Impact factor: 4.418

Review 7.  The FMRFamide-Like Peptide Family in Nematodes.

Authors:  Katleen Peymen; Jan Watteyne; Lotte Frooninckx; Liliane Schoofs; Isabel Beets
Journal:  Front Endocrinol (Lausanne)       Date:  2014-06-16       Impact factor: 5.555

Review 8.  Family of FLP Peptides in Caenorhabditis elegans and Related Nematodes.

Authors:  Chris Li; Kyuhyung Kim
Journal:  Front Endocrinol (Lausanne)       Date:  2014-10-14       Impact factor: 5.555

9.  Unraveling flp-11/flp-32 dichotomy in nematodes.

Authors:  Louise E Atkinson; Iain R Miskelly; Christy L Moffett; Ciaran J McCoy; Aaron G Maule; Nikki J Marks; Angela Mousley
Journal:  Int J Parasitol       Date:  2016-07-20       Impact factor: 3.981

  9 in total

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