Literature DB >> 21880012

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

Roberta Possenti1, Giampiero Muccioli, Pamela Petrocchi, Cheryl Cero, Aderville Cabassi, Lucy Vulchanova, Maureen S Riedl, Monia Manieri, Andrea Frontini, Antonio Giordano, Saverio Cinti, Paolo Govoni, Gallia Graiani, Federico Quaini, Corrado Ghè, Elena Bresciani, Ilaria Bulgarelli, Antonio Torsello, Vittorio Locatelli, Valentina Sanghez, Bjarne D Larsen, Jorgen S Petersen, Paola Palanza, Stefano Parmigiani, Anna Moles, Andrea Levi, Alessandro Bartolomucci.   

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.

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Year:  2012        PMID: 21880012     DOI: 10.1042/BJ20111165

Source DB:  PubMed          Journal:  Biochem J        ISSN: 0264-6021            Impact factor:   3.857


  30 in total

1.  Identification of the C3a receptor (C3AR1) as the target of the VGF-derived peptide TLQP-21 in rodent cells.

Authors:  Sebastien Hannedouche; Valerie Beck; Juliet Leighton-Davies; Martin Beibel; Guglielmo Roma; Edward J Oakeley; Vincent Lannoy; Jerome Bernard; Jacques Hamon; Samuel Barbieri; Inga Preuss; Marie-Christine Lasbennes; Andreas W Sailer; Thomas Suply; Klaus Seuwen; Christian N Parker; Frederic Bassilana
Journal:  J Biol Chem       Date:  2013-08-12       Impact factor: 5.157

2.  Clearance kinetics of the VGF-derived neuropeptide TLQP-21.

Authors:  ZengKui Guo; Bhavani S Sahu; Rongjun He; Brian Finan; Cheryl Cero; Raffaello Verardi; Maria Razzoli; Gianluigi Veglia; Richard D Di Marchi; John M Miles; Alessandro Bartolomucci
Journal:  Neuropeptides       Date:  2018-06-19       Impact factor: 3.286

Review 3.  Neural innervation of white adipose tissue and the control of lipolysis.

Authors:  Timothy J Bartness; Yang Liu; Yogendra B Shrestha; Vitaly Ryu
Journal:  Front Neuroendocrinol       Date:  2014-04-13       Impact factor: 8.606

Review 4.  The Dichotomous Effect of Chronic Stress on Obesity.

Authors:  Maria Razzoli; Alessandro Bartolomucci
Journal:  Trends Endocrinol Metab       Date:  2016-05-05       Impact factor: 12.015

5.  The TLQP-21 peptide activates the G-protein-coupled receptor C3aR1 via a folding-upon-binding mechanism.

Authors:  Cheryl Cero; Vitaly V Vostrikov; Raffaello Verardi; Cinzia Severini; Tata Gopinath; Patrick D Braun; Maria F Sassano; Allison Gurney; Bryan L Roth; Lucy Vulchanova; Roberta Possenti; Gianluigi Veglia; Alessandro Bartolomucci
Journal:  Structure       Date:  2014-11-13       Impact factor: 5.006

6.  A VGF-derived peptide attenuates development of type 2 diabetes via enhancement of islet β-cell survival and function.

Authors:  Samuel B Stephens; Jonathan C Schisler; Hans E Hohmeier; Jie An; Albert Y Sun; Geoffrey S Pitt; Christopher B Newgard
Journal:  Cell Metab       Date:  2012-07-03       Impact factor: 27.287

7.  The VGF-derived Peptide TLQP21 Impairs Purinergic Control of Chemotaxis and Phagocytosis in Mouse Microglia.

Authors:  Nirmeen Elmadany; Felipe de Almeida Sassi; Stefan Wendt; Francesca Logiacco; Josien Visser; Verena Haage; Daniel Perez Hernandez; Philipp Mertins; Dolores Hambardzumyan; Susanne Wolf; Helmut Kettenmann; Marcus Semtner
Journal:  J Neurosci       Date:  2020-02-14       Impact factor: 6.167

8.  Role of Hypothalamic VGF in Energy Balance and Metabolic Adaption to Environmental Enrichment in Mice.

Authors:  Grant D Foglesong; Wei Huang; Xianglan Liu; Andrew M Slater; Jason Siu; Vedat Yildiz; Stephen R J Salton; Lei Cao
Journal:  Endocrinology       Date:  2016-01-05       Impact factor: 4.736

9.  The granin VGF promotes genesis of secretory vesicles, and regulates circulating catecholamine levels and blood pressure.

Authors:  Samira Fargali; Angelo L Garcia; Masato Sadahiro; Cheng Jiang; William G Janssen; Wei-Jye Lin; Valeria Cogliani; Alice Elste; Steven Mortillo; Cheryl Cero; Britta Veitenheimer; Gallia Graiani; Giulio M Pasinetti; Sushil K Mahata; John W Osborn; George W Huntley; Greg R Phillips; Deanna L Benson; Alessandro Bartolomucci; Stephen R Salton
Journal:  FASEB J       Date:  2014-02-04       Impact factor: 5.191

10.  Germline ablation of VGF increases lipolysis in white adipose tissue.

Authors:  Samira Fargali; Thomas Scherer; Andrew C Shin; Masato Sadahiro; Christoph Buettner; Stephen R Salton
Journal:  J Endocrinol       Date:  2012-08-31       Impact factor: 4.286

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