The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.

Lamins' functions are regulated by phosphorylation at specific sites but our understanding of the role of such modifications is practically limited to the function of cdc 2 (cdk1) kinase sites in depolymerization of the nuclear lamina during mitosis. In our study we used Drosophila lamin Dm (B-...

Full description

Bibliographic Details
Main Authors: Magdalena Zaremba-Czogalla, Katarzyna Piekarowicz, Katarzyna Wachowicz, Katarzyna Kozioł, Magda Dubińska-Magiera, Ryszard Rzepecki
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22393432/?tool=EBI
id doaj-e42e09c0a1624f0ebcb24604c0eec1e7
record_format Article
spelling doaj-e42e09c0a1624f0ebcb24604c0eec1e72021-03-04T00:59:30ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0172e3264910.1371/journal.pone.0032649The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.Magdalena Zaremba-CzogallaKatarzyna PiekarowiczKatarzyna WachowiczKatarzyna KoziołMagda Dubińska-MagieraRyszard RzepeckiLamins' functions are regulated by phosphorylation at specific sites but our understanding of the role of such modifications is practically limited to the function of cdc 2 (cdk1) kinase sites in depolymerization of the nuclear lamina during mitosis. In our study we used Drosophila lamin Dm (B-type) to examine the function of particular phosphorylation sites using pseudophosphorylated mutants mimicking single phosphorylation at experimentally confirmed in vivo phosphosites (S(25)E, S(45)E, T(435)E, S(595)E). We also analyzed lamin C (A-type) and its mutant S(37)E representing the N-terminal cdc2 (mitotic) site as well as lamin Dm R(64)H mutant as a control, non-polymerizing lamin. In the polymerization assay we could observe different effects of N-terminal cdc2 site pseudophosphorylation on A- and B-type lamins: lamin Dm S(45)E mutant was insoluble, in contrast to lamin C S(37)E. Lamin Dm T(435)E (C-terminal cdc2 site) and R(64)H were soluble in vitro. We also confirmed that none of the single phosphorylation site modifications affected the chromatin binding of lamin Dm, in contrast to the lamin C N-terminal cdc2 site. In vivo, all lamin Dm mutants were incorporated efficiently into the nuclear lamina in transfected Drosophila S2 and HeLa cells, although significant amounts of S(45)E and T(435)E were also located in cytoplasm. When farnesylation incompetent mutants were expressed in HeLa cells, lamin Dm T(435)E was cytoplasmic and showed higher mobility in FRAP assay.https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22393432/?tool=EBI
collection DOAJ
language English
format Article
sources DOAJ
author Magdalena Zaremba-Czogalla
Katarzyna Piekarowicz
Katarzyna Wachowicz
Katarzyna Kozioł
Magda Dubińska-Magiera
Ryszard Rzepecki
spellingShingle Magdalena Zaremba-Czogalla
Katarzyna Piekarowicz
Katarzyna Wachowicz
Katarzyna Kozioł
Magda Dubińska-Magiera
Ryszard Rzepecki
The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.
PLoS ONE
author_facet Magdalena Zaremba-Czogalla
Katarzyna Piekarowicz
Katarzyna Wachowicz
Katarzyna Kozioł
Magda Dubińska-Magiera
Ryszard Rzepecki
author_sort Magdalena Zaremba-Czogalla
title The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.
title_short The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.
title_full The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.
title_fullStr The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.
title_full_unstemmed The different function of single phosphorylation sites of Drosophila melanogaster lamin Dm and lamin C.
title_sort different function of single phosphorylation sites of drosophila melanogaster lamin dm and lamin c.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2012-01-01
description Lamins' functions are regulated by phosphorylation at specific sites but our understanding of the role of such modifications is practically limited to the function of cdc 2 (cdk1) kinase sites in depolymerization of the nuclear lamina during mitosis. In our study we used Drosophila lamin Dm (B-type) to examine the function of particular phosphorylation sites using pseudophosphorylated mutants mimicking single phosphorylation at experimentally confirmed in vivo phosphosites (S(25)E, S(45)E, T(435)E, S(595)E). We also analyzed lamin C (A-type) and its mutant S(37)E representing the N-terminal cdc2 (mitotic) site as well as lamin Dm R(64)H mutant as a control, non-polymerizing lamin. In the polymerization assay we could observe different effects of N-terminal cdc2 site pseudophosphorylation on A- and B-type lamins: lamin Dm S(45)E mutant was insoluble, in contrast to lamin C S(37)E. Lamin Dm T(435)E (C-terminal cdc2 site) and R(64)H were soluble in vitro. We also confirmed that none of the single phosphorylation site modifications affected the chromatin binding of lamin Dm, in contrast to the lamin C N-terminal cdc2 site. In vivo, all lamin Dm mutants were incorporated efficiently into the nuclear lamina in transfected Drosophila S2 and HeLa cells, although significant amounts of S(45)E and T(435)E were also located in cytoplasm. When farnesylation incompetent mutants were expressed in HeLa cells, lamin Dm T(435)E was cytoplasmic and showed higher mobility in FRAP assay.
url https://www.ncbi.nlm.nih.gov/pmc/articles/pmid/22393432/?tool=EBI
work_keys_str_mv AT magdalenazarembaczogalla thedifferentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT katarzynapiekarowicz thedifferentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT katarzynawachowicz thedifferentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT katarzynakozioł thedifferentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT magdadubinskamagiera thedifferentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT ryszardrzepecki thedifferentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT magdalenazarembaczogalla differentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT katarzynapiekarowicz differentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT katarzynawachowicz differentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT katarzynakozioł differentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT magdadubinskamagiera differentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
AT ryszardrzepecki differentfunctionofsinglephosphorylationsitesofdrosophilamelanogasterlamindmandlaminc
_version_ 1714809902210220032