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  A family of hyperpolarization-activated channels selective for protons

Wobig, L., Wolfenstetter, T., Fechner, S., Bönigk, W., Körschen, H. G., Jikeli, J., et al. (2020). A family of hyperpolarization-activated channels selective for protons. Proceedings of the National Academy of Sciences of the United States of America, 117(24), 13783-13791. doi:10.1073/pnas.2001214117.

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13783.full.pdf (Verlagsversion), 7MB
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2020
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This open access article is distributed under Creative Commons Attribution-NonCommercial-NoDerivatives License 4.0 (CC BY-NC-ND).

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 Urheber:
Wobig, Lea1, Autor
Wolfenstetter, Thérèse1, Autor
Fechner, Sylvia1, Autor           
Bönigk, Wolfgang1, Autor           
Körschen, Heinz Gerd1, Autor           
Jikeli, Jan1, Autor           
Trötschel, Christian2, Autor
Feederle, Regina2, Autor
Kaupp, Ulrich Benjamin1, Autor           
Seifert, Reinhard1, Autor           
Berger, Thomas Klaus1, Autor           
Affiliations:
1Department of Molecular Sensory Systems, Center of Advanced European Studies and Research (caesar), Max Planck Society, ou_2173679              
2External Organizations, ou_persistent22              

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Schlagwörter: HCNL1 channel, protonchannel, voltage-sensing domain, HCN channel
 Zusammenfassung: Proton (H+) channels are special: They select protons against other ions that are up to a millionfold more abundant. Only a few proton channels have been identified so far. Here, we identify a family of voltage-gated “pacemaker” channels, HCNL1, that are exquisitely selective for protons. HCNL1 activates during hyperpolarization and conducts protons into the cytosol. Surprisingly, protons permeate through the channel’s voltage-sensing domain, whereas the pore domain is nonfunctional. Key to proton permeation is a methionine residue that interrupts the series of regularly spaced arginine residues in the S4 voltage sensor. HCNL1 forms a tetramer and thus contains four proton pores. Unlike classic HCN channels, HCNL1 is not gated by cyclic nucleotides. The channel is present in zebrafish sperm and carries a proton inward current that acidifies the cytosol. Our results suggest that protons rather than cyclic nucleotides serve as cellular messengers in zebrafish sperm. Through small modifications in two key functional domains, HCNL1 evolutionarily adapted to a low-Na+ freshwater environment to conserve sperm’s ability to depolarize.

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Sprache(n): eng - English
 Datum: 2020-05-282020-06-16
 Publikationsstatus: Erschienen
 Seiten: 9
 Ort, Verlag, Ausgabe: -
 Inhaltsverzeichnis: -
 Art der Begutachtung: Expertenbegutachtung
 Identifikatoren: DOI: 10.1073/pnas.2001214117
 Art des Abschluß: -

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Titel: Proceedings of the National Academy of Sciences of the United States of America
  Kurztitel : Proc Natl Acad Sci U S A
  Andere : PNAS
Genre der Quelle: Zeitschrift
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Ort, Verlag, Ausgabe: Washington, D.C. : National Academy of Sciences
Seiten: - Band / Heft: 117 (24) Artikelnummer: - Start- / Endseite: 13783 - 13791 Identifikator: ISSN: 0027-8424
CoNE: https://pure.mpg.de/cone/journals/resource/954925427230