Cargando…

BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability

BFSP1 (beaded filament structural protein 1, filensin) is a cytoskeletal protein expressed in the eye lens. It binds AQP0 in vitro and its C-terminal sequences have been suggested to regulate the water channel activity of AQP0. A myristoylated fragment from the C-terminus of BFSP1 was found in AQP0...

Descripción completa

Detalles Bibliográficos
Autores principales: Tapodi, Antal, Clemens, Daniel M., Uwineza, Alice, Jarrin, Miguel, Goldberg, Martin W., Thinon, Emmanuelle, Heal, William P., Tate, Edward W., Nemeth-Cahalan, Karinne, Vorontsova, Irene, Hall, James E., Quinlan, Roy A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6713518/
https://www.ncbi.nlm.nih.gov/pubmed/30790544
http://dx.doi.org/10.1016/j.exer.2019.02.001
_version_ 1783446890019291136
author Tapodi, Antal
Clemens, Daniel M.
Uwineza, Alice
Jarrin, Miguel
Goldberg, Martin W.
Thinon, Emmanuelle
Heal, William P.
Tate, Edward W.
Nemeth-Cahalan, Karinne
Vorontsova, Irene
Hall, James E.
Quinlan, Roy A.
author_facet Tapodi, Antal
Clemens, Daniel M.
Uwineza, Alice
Jarrin, Miguel
Goldberg, Martin W.
Thinon, Emmanuelle
Heal, William P.
Tate, Edward W.
Nemeth-Cahalan, Karinne
Vorontsova, Irene
Hall, James E.
Quinlan, Roy A.
author_sort Tapodi, Antal
collection PubMed
description BFSP1 (beaded filament structural protein 1, filensin) is a cytoskeletal protein expressed in the eye lens. It binds AQP0 in vitro and its C-terminal sequences have been suggested to regulate the water channel activity of AQP0. A myristoylated fragment from the C-terminus of BFSP1 was found in AQP0 enriched fractions. Here we identify BFSP1 as a substrate for caspase-mediated cleavage at several C-terminal sites including D433. Cleavage at D433 exposes a cryptic myristoylation sequence (434–440). We confirm that this sequence is an excellent substrate for both NMT1 and 2 (N-myristoyl transferase). Thus caspase cleavage may promote formation of myristoylated fragments derived from the BFSP1 C-terminus (G434-S665). Myristoylation at G434 is not required for membrane association. Biochemical fractionation and immunogold labeling confirmed that C-terminal BFSP1 fragments containing the myristoylation sequence colocalized with AQP0 in the same plasma membrane compartments of lens fibre cells. To determine the functional significance of the association of BFSP1 G434-S665 sequences with AQP0, we measured AQP0 water permeability in Xenopus oocytes co-transfected with transcripts expressing both AQP0 and various C-terminal domain fragments of BFSP1 generated by caspase cleavage. We found that different fragments dramatically alter the response of AQP0 to different concentrations of Ca(2+). The complete C-terminal fragment (G434-S665) eliminates calcium regulation altogether. Shorter fragments can enhance regulation by elevated calcium or reverse the response, indicative of the regulatory potential of BFSP1 with respect to AQP0. In particular, elimination of the myristoylation site by the mutation G434A reverses the order of water permeability sensitivity to different Ca(2+) concentrations.
format Online
Article
Text
id pubmed-6713518
institution National Center for Biotechnology Information
language English
publishDate 2019
record_format MEDLINE/PubMed
spelling pubmed-67135182020-08-01 BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability Tapodi, Antal Clemens, Daniel M. Uwineza, Alice Jarrin, Miguel Goldberg, Martin W. Thinon, Emmanuelle Heal, William P. Tate, Edward W. Nemeth-Cahalan, Karinne Vorontsova, Irene Hall, James E. Quinlan, Roy A. Exp Eye Res Article BFSP1 (beaded filament structural protein 1, filensin) is a cytoskeletal protein expressed in the eye lens. It binds AQP0 in vitro and its C-terminal sequences have been suggested to regulate the water channel activity of AQP0. A myristoylated fragment from the C-terminus of BFSP1 was found in AQP0 enriched fractions. Here we identify BFSP1 as a substrate for caspase-mediated cleavage at several C-terminal sites including D433. Cleavage at D433 exposes a cryptic myristoylation sequence (434–440). We confirm that this sequence is an excellent substrate for both NMT1 and 2 (N-myristoyl transferase). Thus caspase cleavage may promote formation of myristoylated fragments derived from the BFSP1 C-terminus (G434-S665). Myristoylation at G434 is not required for membrane association. Biochemical fractionation and immunogold labeling confirmed that C-terminal BFSP1 fragments containing the myristoylation sequence colocalized with AQP0 in the same plasma membrane compartments of lens fibre cells. To determine the functional significance of the association of BFSP1 G434-S665 sequences with AQP0, we measured AQP0 water permeability in Xenopus oocytes co-transfected with transcripts expressing both AQP0 and various C-terminal domain fragments of BFSP1 generated by caspase cleavage. We found that different fragments dramatically alter the response of AQP0 to different concentrations of Ca(2+). The complete C-terminal fragment (G434-S665) eliminates calcium regulation altogether. Shorter fragments can enhance regulation by elevated calcium or reverse the response, indicative of the regulatory potential of BFSP1 with respect to AQP0. In particular, elimination of the myristoylation site by the mutation G434A reverses the order of water permeability sensitivity to different Ca(2+) concentrations. 2019-02-18 2019-08 /pmc/articles/PMC6713518/ /pubmed/30790544 http://dx.doi.org/10.1016/j.exer.2019.02.001 Text en https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/BY/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Tapodi, Antal
Clemens, Daniel M.
Uwineza, Alice
Jarrin, Miguel
Goldberg, Martin W.
Thinon, Emmanuelle
Heal, William P.
Tate, Edward W.
Nemeth-Cahalan, Karinne
Vorontsova, Irene
Hall, James E.
Quinlan, Roy A.
BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability
title BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability
title_full BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability
title_fullStr BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability
title_full_unstemmed BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability
title_short BFSP1 C-terminal domains released by post-translational processing events can alter significantly the calcium regulation of AQP0 water permeability
title_sort bfsp1 c-terminal domains released by post-translational processing events can alter significantly the calcium regulation of aqp0 water permeability
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6713518/
https://www.ncbi.nlm.nih.gov/pubmed/30790544
http://dx.doi.org/10.1016/j.exer.2019.02.001
work_keys_str_mv AT tapodiantal bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT clemensdanielm bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT uwinezaalice bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT jarrinmiguel bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT goldbergmartinw bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT thinonemmanuelle bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT healwilliamp bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT tateedwardw bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT nemethcahalankarinne bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT vorontsovairene bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT halljamese bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability
AT quinlanroya bfsp1cterminaldomainsreleasedbyposttranslationalprocessingeventscanaltersignificantlythecalciumregulationofaqp0waterpermeability