Cargando…

Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE

Calcium entry through voltage-gated calcium channels has widespread cellular effects upon a host of physiological processes including neuronal excitability, muscle excitation-contraction coupling, and secretion. Using single particle analysis methods, we have determined the first three-dimensional s...

Descripción completa

Detalles Bibliográficos
Autores principales: Walsh, Conor P., Davies, Anthony, Butcher, Adrian J., Dolphin, Annette C., Kitmitto, Ashraf
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2755954/
https://www.ncbi.nlm.nih.gov/pubmed/19520861
http://dx.doi.org/10.1074/jbc.M109.017152
_version_ 1782172477398450176
author Walsh, Conor P.
Davies, Anthony
Butcher, Adrian J.
Dolphin, Annette C.
Kitmitto, Ashraf
author_facet Walsh, Conor P.
Davies, Anthony
Butcher, Adrian J.
Dolphin, Annette C.
Kitmitto, Ashraf
author_sort Walsh, Conor P.
collection PubMed
description Calcium entry through voltage-gated calcium channels has widespread cellular effects upon a host of physiological processes including neuronal excitability, muscle excitation-contraction coupling, and secretion. Using single particle analysis methods, we have determined the first three-dimensional structure, at 23 Å resolution, for a member of the low voltage-activated voltage-gated calcium channel family, Ca(V)3.1, a T-type channel. Ca(V)3.1 has dimensions of ∼115 × 85 × 95 Å, composed of two distinct segments. The cytoplasmic densities form a vestibule below the transmembrane domain with the C terminus, unambiguously identified by the presence of a His tag being ∼65 Å long and curling around the base of the structure. The cytoplasmic assembly has a large exposed surface area that may serve as a signaling hub with the C terminus acting as a “fishing rod” to bind regulatory proteins. We have also determined a three-dimensional structure, at a resolution of 25 Å, for the monomeric form of the cardiac L-type voltage-gated calcium (high voltage-activated) channel with accessory proteins β and α(2)δ bound to the ion channel polypeptide Ca(V)1.2. Comparison with the skeletal muscle isoform finds a good match particularly with respect to the conformation, size, and shape of the domain identified as that formed by α(2). Furthermore, modeling of the Ca(V)3.1 structure (analogous to Ca(V)1.2 at these resolutions) into the heteromeric L-type voltage-gated calcium channel complex volume reveals multiple interaction sites for β-Ca(V)1.2 binding and for the first time identifies the size and organization of the α(2)δ polypeptides.
format Text
id pubmed-2755954
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-27559542009-10-13 Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE Walsh, Conor P. Davies, Anthony Butcher, Adrian J. Dolphin, Annette C. Kitmitto, Ashraf J Biol Chem Membrane Transport, Structure, Function, and Biogenesis Calcium entry through voltage-gated calcium channels has widespread cellular effects upon a host of physiological processes including neuronal excitability, muscle excitation-contraction coupling, and secretion. Using single particle analysis methods, we have determined the first three-dimensional structure, at 23 Å resolution, for a member of the low voltage-activated voltage-gated calcium channel family, Ca(V)3.1, a T-type channel. Ca(V)3.1 has dimensions of ∼115 × 85 × 95 Å, composed of two distinct segments. The cytoplasmic densities form a vestibule below the transmembrane domain with the C terminus, unambiguously identified by the presence of a His tag being ∼65 Å long and curling around the base of the structure. The cytoplasmic assembly has a large exposed surface area that may serve as a signaling hub with the C terminus acting as a “fishing rod” to bind regulatory proteins. We have also determined a three-dimensional structure, at a resolution of 25 Å, for the monomeric form of the cardiac L-type voltage-gated calcium (high voltage-activated) channel with accessory proteins β and α(2)δ bound to the ion channel polypeptide Ca(V)1.2. Comparison with the skeletal muscle isoform finds a good match particularly with respect to the conformation, size, and shape of the domain identified as that formed by α(2). Furthermore, modeling of the Ca(V)3.1 structure (analogous to Ca(V)1.2 at these resolutions) into the heteromeric L-type voltage-gated calcium channel complex volume reveals multiple interaction sites for β-Ca(V)1.2 binding and for the first time identifies the size and organization of the α(2)δ polypeptides. American Society for Biochemistry and Molecular Biology 2009-08-14 2009-06-11 /pmc/articles/PMC2755954/ /pubmed/19520861 http://dx.doi.org/10.1074/jbc.M109.017152 Text en © 2009 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Membrane Transport, Structure, Function, and Biogenesis
Walsh, Conor P.
Davies, Anthony
Butcher, Adrian J.
Dolphin, Annette C.
Kitmitto, Ashraf
Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE
title Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE
title_full Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE
title_fullStr Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE
title_full_unstemmed Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE
title_short Three-dimensional Structure of Ca(V)3.1: COMPARISON WITH THE CARDIAC L-TYPE VOLTAGE-GATED CALCIUM CHANNEL MONOMER ARCHITECTURE
title_sort three-dimensional structure of ca(v)3.1: comparison with the cardiac l-type voltage-gated calcium channel monomer architecture
topic Membrane Transport, Structure, Function, and Biogenesis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2755954/
https://www.ncbi.nlm.nih.gov/pubmed/19520861
http://dx.doi.org/10.1074/jbc.M109.017152
work_keys_str_mv AT walshconorp threedimensionalstructureofcav31comparisonwiththecardiacltypevoltagegatedcalciumchannelmonomerarchitecture
AT daviesanthony threedimensionalstructureofcav31comparisonwiththecardiacltypevoltagegatedcalciumchannelmonomerarchitecture
AT butcheradrianj threedimensionalstructureofcav31comparisonwiththecardiacltypevoltagegatedcalciumchannelmonomerarchitecture
AT dolphinannettec threedimensionalstructureofcav31comparisonwiththecardiacltypevoltagegatedcalciumchannelmonomerarchitecture
AT kitmittoashraf threedimensionalstructureofcav31comparisonwiththecardiacltypevoltagegatedcalciumchannelmonomerarchitecture