Literature DB >> 28045486

Mimicking Neuroligin-2 Functions in β-Cells by Functionalized Nanoparticles as a Novel Approach for Antidiabetic Therapy.

Anna Munder1, Liron L Israel1,2, Shirin Kahremany1, Rina Ben-Shabat-Binyamini1,2, Charles Zhang3, Michal Kolitz-Domb1,2, Olga Viskind1, Anna Levine4, Hanoch Senderowitz1, Steven Chessler3, Jean-Paul Lellouche1,2, Arie Gruzman1.   

Abstract

Both pancreatic β-cell membranes and presynaptic active zones of neurons include in their structures similar protein complexes, which are responsible for mediating the secretion of bioactive molecules. In addition, these membrane-anchored proteins regulate interactions between neurons and guide the formation and maturation of synapses. These proteins include the neuroligins (e.g., NL-2) and their binding partners, the neurexins. The insulin secretion and maturation of β-cells is known to depend on their 3-dimensional (3D) arrangement. It was also reported that both insulin secretion and the proliferation rates of β-cells increase when cells are cocultured with clusters of NL-2. Use of full-length NL-2 or even its exocellular domain as potential β-cell functional enhancers is limited by the biostability and bioavailability issues common to all protein-based therapeutics. Thus, based on molecular modeling approaches, a short peptide with the potential ability to bind neurexins was derived from the NL-2 sequence. Here, we show that the NL-2-derived peptide conjugates onto innovative functional maghemite-Fe2O3)-based nanoscale composite particles enhance β-cell functions in terms of glucose-stimulated insulin secretion and protect them under stress conditions. Recruiting the β-cells' "neuron-like" secretory machinery as a target for diabetes treatment use has never been reported before. Such nanoscale composites might therefore provide a unique starting point for designing a novel class of antidiabetic therapeutic agents that possess a unique mechanism of action.

Entities:  

Keywords:  INS-1E cells; Yb(III)-γ-Fe2O3 nanoparticles; bioactive peptides; computer-aided drug design; insulin secretion; neuroligin-2

Mesh:

Substances:

Year:  2017        PMID: 28045486      PMCID: PMC6035049          DOI: 10.1021/acsami.6b10568

Source DB:  PubMed          Journal:  ACS Appl Mater Interfaces        ISSN: 1944-8244            Impact factor:   9.229


  63 in total

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4.  Cartography of neurexin alternative splicing mapped by single-molecule long-read mRNA sequencing.

Authors:  Barbara Treutlein; Ozgun Gokce; Stephen R Quake; Thomas C Südhof
Journal:  Proc Natl Acad Sci U S A       Date:  2014-03-17       Impact factor: 11.205

Review 5.  Generation of β cells from human pluripotent stem cells: are we there yet?

Authors:  Jacqueline V Schiesser; James M Wells
Journal:  Ann N Y Acad Sci       Date:  2014-02-24       Impact factor: 5.691

6.  Quantitative monitoring of solid-phase peptide synthesis by the ninhydrin reaction.

Authors:  V K Sarin; S B Kent; J P Tam; R B Merrifield
Journal:  Anal Biochem       Date:  1981-10       Impact factor: 3.365

7.  Autism-associated neuroligin-3 mutations commonly impair striatal circuits to boost repetitive behaviors.

Authors:  Patrick E Rothwell; Marc V Fuccillo; Stephan Maxeiner; Scott J Hayton; Ozgun Gokce; Byung Kook Lim; Stephen C Fowler; Robert C Malenka; Thomas C Südhof
Journal:  Cell       Date:  2014-07-03       Impact factor: 41.582

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9.  Altered pancreatic islet function and morphology in mice lacking the Beta-cell surface protein neuroligin-2.

Authors:  Charles Zhang; Arthur T Suckow; Steven D Chessler
Journal:  PLoS One       Date:  2013-06-11       Impact factor: 3.240

Review 10.  β-cell failure in type 2 diabetes: postulated mechanisms and prospects for prevention and treatment.

Authors:  Philippe A Halban; Kenneth S Polonsky; Donald W Bowden; Meredith A Hawkins; Charlotte Ling; Kieren J Mather; Alvin C Powers; Christopher J Rhodes; Lori Sussel; Gordon C Weir
Journal:  Diabetes Care       Date:  2014-05-08       Impact factor: 19.112

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Authors:  D Vallejo; S H Lee; D Lee; C Zhang; C Rapier; S D Chessler; A P Lee
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Review 2.  The Role of Vascular Cells in Pancreatic Beta-Cell Function.

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