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PMID: 21880012 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Characterization of a novel peripheral pro-lipolytic mechanism in mice: role of VGF-derived peptide TLQP-21.

The Biochemical journal ·Vol. 441 ·No. 1 ·2012-01-01 ·Pages 511-22

Possenti R, Muccioli G, Petrocchi P, Cero C, Cabassi A, Vulchanova L, Riedl MS, Manieri M, Frontini A, Giordano A, Cinti S, Govoni P, Graiani G, Quaini F, Ghè C, Bresciani E, Bulgarelli I, Torsello A, Locatelli V, Sanghez V, Larsen BD, Petersen JS, Palanza P, Parmigiani S, Moles A, Levi A, Bartolomucci A

Abstract

The peptides encoded by the VGF gene are gaining biomedical interest and are increasingly being scrutinized as biomarkers for human disease. An endocrine/neuromodulatory role for VGF peptides has been suggested but never demonstrated. Furthermore, no study has demonstrated so far the existence of a receptor-mediated mechanism for any VGF peptide. In the present study, we provide a comprehensive in vitro, ex vivo and in vivo identification of a novel pro-lipolytic pathway mediated by the TLQP-21 peptide. We show for the first time that VGF-immunoreactivity is present within sympathetic fibres in the WAT (white adipose tissue) but not in the adipocytes. Furthermore, we identified a saturable receptor-binding activity for the TLQP-21 peptide. The maximum binding capacity for TLQP-21 was higher in the WAT as compared with other tissues, and selectively up-regulated in the adipose tissue of obese mice. TLQP-21 increases lipolysis in murine adipocytes via a mechanism encompassing the activation of noradrenaline/β-adrenergic receptors pathways and dose-dependently decreases adipocytes diameters in two models of obesity. In conclusion, we demonstrated a novel and previously uncharacterized peripheral lipolytic pathway encompassing the VGF peptide TLQP-21. Targeting the sympathetic nerve-adipocytes interaction might prove to be a novel approach for the treatment of obesity-associated metabolic complications.

MeSH Terms
Adipocytes/cytology,drug effects Animals Body Composition Dietary Fats/adverse effects,metabolism Male Mice NIH 3T3 Cells Nerve Growth Factors Neuropeptides/metabolism Obesity/chemically induced,metabolism Peptide Fragments/pharmacology Protein Binding Protein Transport Receptors, Cell Surface
Chemicals
Dietary Fats Nerve Growth Factors Neuropeptides Peptide Fragments Receptors, Cell Surface TLQP-21 peptide Vgf protein, mouse
Authors & Affiliations
27 authors, click to expand affiliations / ORCID
Possenti Roberta
Department of Drug Science and Technology, University of Turin, Turin, Italy.
Muccioli Giampiero
Petrocchi Pamela
Cero Cheryl
Cabassi Aderville
Vulchanova Lucy
Riedl Maureen S
Manieri Monia
Frontini Andrea
Giordano Antonio
Cinti Saverio
Govoni Paolo
Graiani Gallia
Quaini Federico
Ghè Corrado
Bresciani Elena
Bulgarelli Ilaria
Torsello Antonio
Locatelli Vittorio
Sanghez Valentina
Larsen Bjarne D
Petersen Jorgen S
Palanza Paola
Parmigiani Stefano
Moles Anna
Levi Andrea
Bartolomucci Alessandro
Article Info
Journal
The Biochemical journal
Abbr.
Biochem J
ISSN
1470-8728
Published
2012-01-01
Pages
511-22
Language
English
Region
England
NLM ID
2984726R
Subset
IM
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