Literature DB >> 11588196

The enterins: a novel family of neuropeptides isolated from the enteric nervous system and CNS of Aplysia.

Y Furukawa1, K Nakamaru, H Wakayama, Y Fujisawa, H Minakata, S Ohta, F Morishita, O Matsushima, L Li, E Romanova, J V Sweedler, J H Park, A Romero, E C Cropper, N C Dembrow, J Jing, K R Weiss, F S Vilim.   

Abstract

To identify neuropeptides that have a broad spectrum of actions on the feeding system of Aplysia, we searched for bioactive peptides that are present in both the gut and the CNS. We identified a family of structurally related nonapeptides and decapeptides (enterins) that are present in the gut and CNS of Aplysia, and most of which share the HSFVamide sequence at the C terminus. The structure of the enterin precursor deduced from cDNA cloning predicts 35 copies of 20 different enterins. Northern analysis, in situ hybridization, and immunocytochemistry show that the enterins are abundantly present in the CNS and the gut of Aplysia. Using matrix-assisted laser desorption/ionization time-of-flight mass spectrometry we characterized the enterin-precursor processing, demonstrated that all of the precursor-predicted enterins are present, and determined post-translational modifications of various enterins. Enterin-positive neuronal somata and processes were found in the gut, and enterins inhibited contractions of the gut. In the CNS, the cerebral and buccal ganglia, which control feeding, contained the enterins. Enterin was also present in the nerve that connects these two ganglia. Enterins reduced the firing of interneurons B4/5 during feeding motor programs. Such enterin-induced reduction of firing also occurred when excitability of B4/5 was tested directly. Because reduction of B4/5 activity corresponds to a switch from egestive to ingestive behaviors, enterin may contribute to such program switching. Furthermore, because enterins are present throughout the nervous system, they may also play a regulatory role in nonfeeding behaviors of Aplysia.

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Year:  2001        PMID: 11588196      PMCID: PMC6763844     

Source DB:  PubMed          Journal:  J Neurosci        ISSN: 0270-6474            Impact factor:   6.167


  45 in total

1.  In situ hybridization of whole-mounts of Aplysia ganglia using non-radioactive probes.

Authors:  J K Ono; R E McCaman
Journal:  J Neurosci Methods       Date:  1992-08       Impact factor: 2.390

2.  Identification of a peptide specific for Aplysia sensory neurons by PCR-based differential screening.

Authors:  J F Brunet; E Shapiro; S A Foster; E R Kandel; Y Iino
Journal:  Science       Date:  1991-05-10       Impact factor: 47.728

3.  The small cardioactive peptides A and B of Aplysia are derived from a common precursor molecule.

Authors:  A C Mahon; P E Lloyd; K R Weiss; I Kupfermann; R H Scheller
Journal:  Proc Natl Acad Sci U S A       Date:  1985-06       Impact factor: 11.205

4.  Sequence of small cardioactive peptide A: a second member of a class of neuropeptides in Aplysia.

Authors:  P E Lloyd; I Kupfermann; K R Weiss
Journal:  Peptides       Date:  1987 Jan-Feb       Impact factor: 3.750

5.  The Aplysia mytilus inhibitory peptide-related peptides: identification, cloning, processing, distribution, and action.

Authors:  Y Fujisawa; Y Furukawa; S Ohta; T A Ellis; N C Dembrow; L Li; P D Floyd; J V Sweedler; H Minakata; K Nakamaru; F Morishita; O Matsushima; K R Weiss; F S Vilim
Journal:  J Neurosci       Date:  1999-11-01       Impact factor: 6.167

6.  A population of SCP-containing neurons in the buccal ganglion of Aplysia are radula mechanoafferents and receive excitation of central origin.

Authors:  M W Miller; S C Rosen; S L Schissel; E C Cropper; I Kupfermann; K R Weiss
Journal:  J Neurosci       Date:  1994-11       Impact factor: 6.167

7.  Invertebrate vasopressin/oxytocin homologs. Characterization of peptides from Conus geographus and Conus straitus venoms.

Authors:  L J Cruz; V de Santos; G C Zafaralla; C A Ramilo; R Zeikus; W R Gray; B M Olivera
Journal:  J Biol Chem       Date:  1987-11-25       Impact factor: 5.157

8.  An enzyme(s) that converts glutaminyl-peptides into pyroglutamyl-peptides. Presence in pituitary, brain, adrenal medulla, and lymphocytes.

Authors:  W H Busby; G E Quackenbush; J Humm; W W Youngblood; J S Kizer
Journal:  J Biol Chem       Date:  1987-06-25       Impact factor: 5.157

9.  Diverse synaptic connections between peptidergic radula mechanoafferent neurons and neurons in the feeding system of Aplysia.

Authors:  S C Rosen; M W Miller; C G Evans; E C Cropper; I Kupfermann
Journal:  J Neurophysiol       Date:  2000-03       Impact factor: 2.714

10.  FRF peptides in the ARC neuromuscular system of Aplysia: purification and physiological actions.

Authors:  E C Cropper; V Brezina; F S Vilim; O Harish; D A Price; S Rosen; I Kupfermann; K R Weiss
Journal:  J Neurophysiol       Date:  1994-11       Impact factor: 2.714

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  21 in total

Review 1.  Beyond the wiring diagram: signalling through complex neuromodulator networks.

Authors:  Vladimir Brezina
Journal:  Philos Trans R Soc Lond B Biol Sci       Date:  2010-08-12       Impact factor: 6.237

2.  Composite modulatory feedforward loop contributes to the establishment of a network state.

Authors:  Jin-Sheng Wu; Ferdinand S Vilim; Nathan G Hatcher; Michael R Due; Jonathan V Sweedler; Klaudiusz R Weiss; Jian Jing
Journal:  J Neurophysiol       Date:  2010-02-24       Impact factor: 2.714

3.  Functional Characterization of a Vesicular Glutamate Transporter in an Interneuron That Makes Excitatory and Inhibitory Synaptic Connections in a Molluscan Neural Circuit.

Authors:  Jian Jing; Vera Alexeeva; Song-An Chen; Ke Yu; Michael R Due; Li-Nuo Tan; Ting-Ting Chen; Dan-Dan Liu; Elizabeth C Cropper; Ferdinand S Vilim; Klaudiusz R Weiss
Journal:  J Neurosci       Date:  2015-06-17       Impact factor: 6.167

4.  An Anticipatory Circuit Modification That Modifies Subsequent Task Switching.

Authors:  Yanqing Wang; Michael A Barry; Monica Cambi; Klaudiusz R Weiss; Elizabeth C Cropper
Journal:  J Neurosci       Date:  2021-01-26       Impact factor: 6.167

5.  Discovery of leucokinin-like neuropeptides that modulate a specific parameter of feeding motor programs in the molluscan model, Aplysia.

Authors:  Guo Zhang; Ferdinand S Vilim; Dan-Dan Liu; Elena V Romanova; Ke Yu; Wang-Ding Yuan; Hui Xiao; Amanda B Hummon; Ting-Ting Chen; Vera Alexeeva; Si-Yuan Yin; Song-An Chen; Elizabeth C Cropper; Jonathan V Sweedler; Klaudiusz R Weiss; Jian Jing
Journal:  J Biol Chem       Date:  2017-09-18       Impact factor: 5.157

6.  Newly Identified Aplysia SPTR-Gene Family-Derived Peptides: Localization and Function.

Authors:  Guo Zhang; Wang-Ding Yuan; Ferdinand S Vilim; Elena V Romanova; Ke Yu; Si-Yuan Yin; Zi-Wei Le; Ying-Yu Xue; Ting-Ting Chen; Guo-Kai Chen; Song-An Chen; Elizabeth C Cropper; Jonathan V Sweedler; Klaudiusz R Weiss; Jian Jing
Journal:  ACS Chem Neurosci       Date:  2018-03-27       Impact factor: 4.418

7.  Complementary interactions between command-like interneurons that function to activate and specify motor programs.

Authors:  Jin-Sheng Wu; Nan Wang; Michael J Siniscalchi; Matthew H Perkins; Yu-Tong Zheng; Wei Yu; Song-an Chen; Ruo-nan Jia; Jia-Wei Gu; Yi-Qing Qian; Yang Ye; Ferdinand S Vilim; Elizabeth C Cropper; Klaudiusz R Weiss; Jian Jing
Journal:  J Neurosci       Date:  2014-05-07       Impact factor: 6.167

8.  Distinct mechanisms produce functionally complementary actions of neuropeptides that are structurally related but derived from different precursors.

Authors:  Ferdinand S Vilim; Kosei Sasaki; Jurgen Rybak; Vera Alexeeva; Elizabeth C Cropper; Jian Jing; Irina V Orekhova; Vladimir Brezina; David Price; Elena V Romanova; Stanislav S Rubakhin; Nathan Hatcher; Jonathan V Sweedler; Klaudiusz R Weiss
Journal:  J Neurosci       Date:  2010-01-06       Impact factor: 6.167

9.  An EST screen from the annelid Pomatoceros lamarckii reveals patterns of gene loss and gain in animals.

Authors:  Tokiharu Takahashi; Carmel McDougall; Jolyon Troscianko; Wei-Chung Chen; Ahamarshan Jayaraman-Nagarajan; Sebastian M Shimeld; David E K Ferrier
Journal:  BMC Evol Biol       Date:  2009-09-25       Impact factor: 3.260

10.  Latent modulation: a basis for non-disruptive promotion of two incompatible behaviors by a single network state.

Authors:  Andrew M Dacks; Klaudiusz R Weiss
Journal:  J Neurosci       Date:  2013-02-27       Impact factor: 6.167

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