Cargando…

Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects

The adaptor protein-2 sigma subunit (AP2σ2) is pivotal for clathrin-mediated endocytosis of plasma membrane constituents such as the calcium-sensing receptor (CaSR). Mutations of the AP2σ2 Arg15 residue result in familial hypocalciuric hypercalcaemia type 3 (FHH3), a disorder of extracellular calciu...

Descripción completa

Detalles Bibliográficos
Autores principales: Hannan, Fadil M., Howles, Sarah A., Rogers, Angela, Cranston, Treena, Gorvin, Caroline M., Babinsky, Valerie N., Reed, Anita A., Thakker, Clare E., Bockenhauer, Detlef, Brown, Rosalind S., Connell, John M., Cook, Jacqueline, Darzy, Ken, Ehtisham, Sarah, Graham, Una, Hulse, Tony, Hunter, Steven J., Izatt, Louise, Kumar, Dhavendra, McKenna, Malachi J., McKnight, John A., Morrison, Patrick J., Mughal, M. Zulf, O'Halloran, Domhnall, Pearce, Simon H., Porteous, Mary E., Rahman, Mushtaqur, Richardson, Tristan, Robinson, Robert, Scheers, Isabelle, Siddique, Haroon, van't Hoff, William G., Wang, Timothy, Whyte, Michael P., Nesbit, M. Andrew, Thakker, Rajesh V.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4550820/
https://www.ncbi.nlm.nih.gov/pubmed/26082470
http://dx.doi.org/10.1093/hmg/ddv226
_version_ 1782387506448171008
author Hannan, Fadil M.
Howles, Sarah A.
Rogers, Angela
Cranston, Treena
Gorvin, Caroline M.
Babinsky, Valerie N.
Reed, Anita A.
Thakker, Clare E.
Bockenhauer, Detlef
Brown, Rosalind S.
Connell, John M.
Cook, Jacqueline
Darzy, Ken
Ehtisham, Sarah
Graham, Una
Hulse, Tony
Hunter, Steven J.
Izatt, Louise
Kumar, Dhavendra
McKenna, Malachi J.
McKnight, John A.
Morrison, Patrick J.
Mughal, M. Zulf
O'Halloran, Domhnall
Pearce, Simon H.
Porteous, Mary E.
Rahman, Mushtaqur
Richardson, Tristan
Robinson, Robert
Scheers, Isabelle
Siddique, Haroon
van't Hoff, William G.
Wang, Timothy
Whyte, Michael P.
Nesbit, M. Andrew
Thakker, Rajesh V.
author_facet Hannan, Fadil M.
Howles, Sarah A.
Rogers, Angela
Cranston, Treena
Gorvin, Caroline M.
Babinsky, Valerie N.
Reed, Anita A.
Thakker, Clare E.
Bockenhauer, Detlef
Brown, Rosalind S.
Connell, John M.
Cook, Jacqueline
Darzy, Ken
Ehtisham, Sarah
Graham, Una
Hulse, Tony
Hunter, Steven J.
Izatt, Louise
Kumar, Dhavendra
McKenna, Malachi J.
McKnight, John A.
Morrison, Patrick J.
Mughal, M. Zulf
O'Halloran, Domhnall
Pearce, Simon H.
Porteous, Mary E.
Rahman, Mushtaqur
Richardson, Tristan
Robinson, Robert
Scheers, Isabelle
Siddique, Haroon
van't Hoff, William G.
Wang, Timothy
Whyte, Michael P.
Nesbit, M. Andrew
Thakker, Rajesh V.
author_sort Hannan, Fadil M.
collection PubMed
description The adaptor protein-2 sigma subunit (AP2σ2) is pivotal for clathrin-mediated endocytosis of plasma membrane constituents such as the calcium-sensing receptor (CaSR). Mutations of the AP2σ2 Arg15 residue result in familial hypocalciuric hypercalcaemia type 3 (FHH3), a disorder of extracellular calcium (Ca(2+)(o)) homeostasis. To elucidate the role of AP2σ2 in Ca(2+)(o) regulation, we investigated 65 FHH probands, without other FHH-associated mutations, for AP2σ2 mutations, characterized their functional consequences and investigated the genetic mechanisms leading to FHH3. AP2σ2 mutations were identified in 17 probands, comprising 5 Arg15Cys, 4 Arg15His and 8 Arg15Leu mutations. A genotype–phenotype correlation was observed with the Arg15Leu mutation leading to marked hypercalcaemia. FHH3 probands harboured additional phenotypes such as cognitive dysfunction. All three FHH3-causing AP2σ2 mutations impaired CaSR signal transduction in a dominant-negative manner. Mutational bias was observed at the AP2σ2 Arg15 residue as other predicted missense substitutions (Arg15Gly, Arg15Pro and Arg15Ser), which also caused CaSR loss-of-function, were not detected in FHH probands, and these mutations were found to reduce the numbers of CaSR-expressing cells. FHH3 probands had significantly greater serum calcium (sCa) and magnesium (sMg) concentrations with reduced urinary calcium to creatinine clearance ratios (CCCR) in comparison with FHH1 probands with CaSR mutations, and a calculated index of sCa × sMg/100 × CCCR, which was ≥ 5.0, had a diagnostic sensitivity and specificity of 83 and 86%, respectively, for FHH3. Thus, our studies demonstrate AP2σ2 mutations to result in a more severe FHH phenotype with genotype–phenotype correlations, and a dominant-negative mechanism of action with mutational bias at the Arg15 residue.
format Online
Article
Text
id pubmed-4550820
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher Oxford University Press
record_format MEDLINE/PubMed
spelling pubmed-45508202015-08-28 Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects Hannan, Fadil M. Howles, Sarah A. Rogers, Angela Cranston, Treena Gorvin, Caroline M. Babinsky, Valerie N. Reed, Anita A. Thakker, Clare E. Bockenhauer, Detlef Brown, Rosalind S. Connell, John M. Cook, Jacqueline Darzy, Ken Ehtisham, Sarah Graham, Una Hulse, Tony Hunter, Steven J. Izatt, Louise Kumar, Dhavendra McKenna, Malachi J. McKnight, John A. Morrison, Patrick J. Mughal, M. Zulf O'Halloran, Domhnall Pearce, Simon H. Porteous, Mary E. Rahman, Mushtaqur Richardson, Tristan Robinson, Robert Scheers, Isabelle Siddique, Haroon van't Hoff, William G. Wang, Timothy Whyte, Michael P. Nesbit, M. Andrew Thakker, Rajesh V. Hum Mol Genet Articles The adaptor protein-2 sigma subunit (AP2σ2) is pivotal for clathrin-mediated endocytosis of plasma membrane constituents such as the calcium-sensing receptor (CaSR). Mutations of the AP2σ2 Arg15 residue result in familial hypocalciuric hypercalcaemia type 3 (FHH3), a disorder of extracellular calcium (Ca(2+)(o)) homeostasis. To elucidate the role of AP2σ2 in Ca(2+)(o) regulation, we investigated 65 FHH probands, without other FHH-associated mutations, for AP2σ2 mutations, characterized their functional consequences and investigated the genetic mechanisms leading to FHH3. AP2σ2 mutations were identified in 17 probands, comprising 5 Arg15Cys, 4 Arg15His and 8 Arg15Leu mutations. A genotype–phenotype correlation was observed with the Arg15Leu mutation leading to marked hypercalcaemia. FHH3 probands harboured additional phenotypes such as cognitive dysfunction. All three FHH3-causing AP2σ2 mutations impaired CaSR signal transduction in a dominant-negative manner. Mutational bias was observed at the AP2σ2 Arg15 residue as other predicted missense substitutions (Arg15Gly, Arg15Pro and Arg15Ser), which also caused CaSR loss-of-function, were not detected in FHH probands, and these mutations were found to reduce the numbers of CaSR-expressing cells. FHH3 probands had significantly greater serum calcium (sCa) and magnesium (sMg) concentrations with reduced urinary calcium to creatinine clearance ratios (CCCR) in comparison with FHH1 probands with CaSR mutations, and a calculated index of sCa × sMg/100 × CCCR, which was ≥ 5.0, had a diagnostic sensitivity and specificity of 83 and 86%, respectively, for FHH3. Thus, our studies demonstrate AP2σ2 mutations to result in a more severe FHH phenotype with genotype–phenotype correlations, and a dominant-negative mechanism of action with mutational bias at the Arg15 residue. Oxford University Press 2015-09-15 2015-06-16 /pmc/articles/PMC4550820/ /pubmed/26082470 http://dx.doi.org/10.1093/hmg/ddv226 Text en © The Author 2015. Published by Oxford University Press. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Hannan, Fadil M.
Howles, Sarah A.
Rogers, Angela
Cranston, Treena
Gorvin, Caroline M.
Babinsky, Valerie N.
Reed, Anita A.
Thakker, Clare E.
Bockenhauer, Detlef
Brown, Rosalind S.
Connell, John M.
Cook, Jacqueline
Darzy, Ken
Ehtisham, Sarah
Graham, Una
Hulse, Tony
Hunter, Steven J.
Izatt, Louise
Kumar, Dhavendra
McKenna, Malachi J.
McKnight, John A.
Morrison, Patrick J.
Mughal, M. Zulf
O'Halloran, Domhnall
Pearce, Simon H.
Porteous, Mary E.
Rahman, Mushtaqur
Richardson, Tristan
Robinson, Robert
Scheers, Isabelle
Siddique, Haroon
van't Hoff, William G.
Wang, Timothy
Whyte, Michael P.
Nesbit, M. Andrew
Thakker, Rajesh V.
Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
title Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
title_full Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
title_fullStr Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
title_full_unstemmed Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
title_short Adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (FHH3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
title_sort adaptor protein-2 sigma subunit mutations causing familial hypocalciuric hypercalcaemia type 3 (fhh3) demonstrate genotype–phenotype correlations, codon bias and dominant-negative effects
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4550820/
https://www.ncbi.nlm.nih.gov/pubmed/26082470
http://dx.doi.org/10.1093/hmg/ddv226
work_keys_str_mv AT hannanfadilm adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT howlessaraha adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT rogersangela adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT cranstontreena adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT gorvincarolinem adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT babinskyvalerien adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT reedanitaa adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT thakkerclaree adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT bockenhauerdetlef adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT brownrosalinds adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT connelljohnm adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT cookjacqueline adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT darzyken adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT ehtishamsarah adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT grahamuna adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT hulsetony adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT hunterstevenj adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT izattlouise adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT kumardhavendra adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT mckennamalachij adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT mcknightjohna adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT morrisonpatrickj adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT mughalmzulf adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT ohallorandomhnall adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT pearcesimonh adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT porteousmarye adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT rahmanmushtaqur adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT richardsontristan adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT robinsonrobert adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT scheersisabelle adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT siddiqueharoon adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT vanthoffwilliamg adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT wangtimothy adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT whytemichaelp adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT nesbitmandrew adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects
AT thakkerrajeshv adaptorprotein2sigmasubunitmutationscausingfamilialhypocalciurichypercalcaemiatype3fhh3demonstrategenotypephenotypecorrelationscodonbiasanddominantnegativeeffects