Literature DB >> 29719171

Pannexin1: a multifunction and multiconductance and/or permeability membrane channel.

Junjie Wang1, Gerhard Dahl1.   

Abstract

Of the three pannexins in vertebrate proteomes, pannexin1 (Panx1) is the only one well characterized, and it is generally accepted that Panx1 functions as an ATP release channel for signaling to other cells. However, the ATP permeability of the channel is only observed with certain stimuli, including low oxygen, mechanical stress, and elevated extracellular potassium ion concentration. Otherwise, the Panx1 channel is selective for chloride ions and exhibits no ATP permeability when stimulated simply by depolarization to positive potentials. A third, irreversible activation of Panx1 follows cleavage of carboxyterminal amino acids by caspase 3. The selectivity/permeability properties of the caspase cleaved channel are unclear as it reportedly has features of both channel conformations. Here we describe the biophysical properties of the channel formed by the truncation mutant Panx1Δ378, which is identical to the caspase-cleaved protein. Consistent with previous findings for the caspase-activated channel, the Panx1Δ378 channel was constitutively active. However, like the voltage-gated channel, the Panx1Δ378 channel had high chloride selectivity, lacked cation permeability, and did not mediate ATP release unless stimulated by extracellular potassium ions. Thus, the caspase-cleaved Panx1 channel should be impermeable to ATP, contrary to previous claims.

Entities:  

Keywords:  ATP; caspase; pannexin; potassium; selectivity

Mesh:

Substances:

Year:  2018        PMID: 29719171     DOI: 10.1152/ajpcell.00302.2017

Source DB:  PubMed          Journal:  Am J Physiol Cell Physiol        ISSN: 0363-6143            Impact factor:   4.249


  14 in total

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Review 2.  Pannexin 1 channels and ATP release in epilepsy: two sides of the same coin : The contribution of pannexin-1, connexins, and CALHM ATP-release channels to purinergic signaling.

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Journal:  Purinergic Signal       Date:  2021-09-08       Impact factor: 3.765

3.  Endogenous pannexin1 channels form functional intercellular cell-cell channels with characteristic voltage-dependent properties.

Authors:  Nicolás Palacios-Prado; Paola A Soto; Ximena López; Eun Ju Choi; Valeria Marquez-Miranda; Maximiliano Rojas; Yorley Duarte; Jinu Lee; Fernando D González-Nilo; Juan C Sáez
Journal:  Proc Natl Acad Sci U S A       Date:  2022-04-29       Impact factor: 12.779

4.  Structurally defined signaling in neuro-glia units in the enteric nervous system.

Authors:  Werend Boesmans; Marlene M Hao; Candice Fung; Zhiling Li; Chris Van den Haute; Jan Tack; Vassilis Pachnis; Pieter Vanden Berghe
Journal:  Glia       Date:  2019-02-07       Impact factor: 7.452

5.  A novel motif in the proximal C-terminus of Pannexin 1 regulates cell surface localization.

Authors:  Anna L Epp; Sarah N Ebert; Juan C Sanchez-Arias; Leigh E Wicki-Stordeur; Andrew K J Boyce; Leigh Anne Swayne
Journal:  Sci Rep       Date:  2019-07-05       Impact factor: 4.379

6.  Pannexin-1 Channels Are Essential for Mast Cell Degranulation Triggered During Type I Hypersensitivity Reactions.

Authors:  Paloma A Harcha; Ximena López; Pablo J Sáez; Paola Fernández; Iván Barría; Agustín D Martínez; Juan C Sáez
Journal:  Front Immunol       Date:  2019-11-29       Impact factor: 7.561

7.  Role of an Aromatic-Aromatic Interaction in the Assembly and Trafficking of the Zebrafish Panx1a Membrane Channel.

Authors:  Ksenia Timonina; Anna Kotova; Georg Zoidl
Journal:  Biomolecules       Date:  2020-02-11

8.  ATP and large signaling metabolites flux through caspase-activated Pannexin 1 channels.

Authors:  Alex Jb Kreutzberger; Pablo S Gaete; Adishesh K Narahari; Yu-Hsin Chiu; Susan A Leonhardt; Christopher B Medina; Xueyao Jin; Patrycja W Oleniacz; Volker Kiessling; Paula Q Barrett; Kodi S Ravichandran; Mark Yeager; Jorge E Contreras; Lukas K Tamm; Douglas A Bayliss
Journal:  Elife       Date:  2021-01-07       Impact factor: 8.140

9.  A physiologic rise in cytoplasmic calcium ion signal increases pannexin1 channel activity via a C-terminus phosphorylation by CaMKII.

Authors:  Ximena López; Nicolás Palacios-Prado; Juan Güiza; Rosalba Escamilla; Paola Fernández; José L Vega; Maximiliano Rojas; Valeria Marquez-Miranda; Eduardo Chamorro; Ana M Cárdenas; María Constanza Maldifassi; Agustín D Martínez; Yorley Duarte; Fernando D González-Nilo; Juan C Sáez
Journal:  Proc Natl Acad Sci U S A       Date:  2021-08-10       Impact factor: 11.205

10.  Pannexin 1 inhibition delays maturation and improves development of Bos taurus oocytes.

Authors:  Zachary Timothy Dye; Lauren Virginia Rutledge; Silvia Penuela; Paul William Dyce
Journal:  J Ovarian Res       Date:  2020-08-24       Impact factor: 4.234

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