• Je něco špatně v tomto záznamu ?

Role of STN1 and DNA polymerase α in telomere stability and genome-wide replication in Arabidopsis

E. Derboven, H. Ekker, B. Kusenda, P. Bulankova, K. Riha,

. 2014 ; 10 (10) : e1004682. [pub] 20141009

Jazyk angličtina Země Spojené státy americké

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/bmc16021045

The CST (Cdc13/CTC1-STN1-TEN1) complex was proposed to have evolved kingdom specific roles in telomere capping and replication. To shed light on its evolutionary conserved function, we examined the effect of STN1 dysfunction on telomere structure in plants. STN1 inactivation in Arabidopsis leads to a progressive loss of telomeric DNA and the onset of telomeric defects depends on the initial telomere size. While EXO1 aggravates defects associated with STN1 dysfunction, it does not contribute to the formation of long G-overhangs. Instead, these G-overhangs arise, at least partially, from telomerase-mediated telomere extension indicating a deficiency in C-strand fill-in synthesis. Analysis of hypomorphic DNA polymerase α mutants revealed that the impaired function of a general replication factor mimics the telomeric defects associated with CST dysfunction. Furthermore, we show that STN1-deficiency hinders re-replication of heterochromatic regions to a similar extent as polymerase α mutations. This comparative analysis of stn1 and pol α mutants suggests that STN1 plays a genome-wide role in DNA replication and that chromosome-end deprotection in stn1 mutants may represent a manifestation of aberrant replication through telomeres.

Citace poskytuje Crossref.org

000      
00000naa a2200000 a 4500
001      
bmc16021045
003      
CZ-PrNML
005      
20160727101159.0
007      
ta
008      
160722s2014 xxu f 000 0|eng||
009      
AR
024    7_
$a 10.1371/journal.pgen.1004682 $2 doi
024    7_
$a 10.1371/journal.pgen.1004682 $2 doi
035    __
$a (PubMed)25299252
040    __
$a ABA008 $b cze $d ABA008 $e AACR2
041    0_
$a eng
044    __
$a xxu
100    1_
$a Derboven, Elisa $u Gregor Mendel Institute, Austrian Academy of Sciences, Vienna, Austria.
245    10
$a Role of STN1 and DNA polymerase α in telomere stability and genome-wide replication in Arabidopsis / $c E. Derboven, H. Ekker, B. Kusenda, P. Bulankova, K. Riha,
520    9_
$a The CST (Cdc13/CTC1-STN1-TEN1) complex was proposed to have evolved kingdom specific roles in telomere capping and replication. To shed light on its evolutionary conserved function, we examined the effect of STN1 dysfunction on telomere structure in plants. STN1 inactivation in Arabidopsis leads to a progressive loss of telomeric DNA and the onset of telomeric defects depends on the initial telomere size. While EXO1 aggravates defects associated with STN1 dysfunction, it does not contribute to the formation of long G-overhangs. Instead, these G-overhangs arise, at least partially, from telomerase-mediated telomere extension indicating a deficiency in C-strand fill-in synthesis. Analysis of hypomorphic DNA polymerase α mutants revealed that the impaired function of a general replication factor mimics the telomeric defects associated with CST dysfunction. Furthermore, we show that STN1-deficiency hinders re-replication of heterochromatic regions to a similar extent as polymerase α mutations. This comparative analysis of stn1 and pol α mutants suggests that STN1 plays a genome-wide role in DNA replication and that chromosome-end deprotection in stn1 mutants may represent a manifestation of aberrant replication through telomeres.
650    _2
$a Arabidopsis $x genetika $x metabolismus $7 D017360
650    _2
$a proteiny huseníčku $x genetika $x metabolismus $7 D029681
650    _2
$a proteiny buněčného cyklu $x genetika $x metabolismus $7 D018797
650    _2
$a chromozomální proteiny, nehistonové $x genetika $x metabolismus $7 D002868
650    _2
$a DNA-polymerasa I $x genetika $x metabolismus $7 D004256
650    _2
$a replikace DNA $7 D004261
650    _2
$a exodeoxyribonukleasy $x metabolismus $7 D005090
650    _2
$a genom rostlinný $7 D018745
650    _2
$a heterochromatin $x genetika $x metabolismus $7 D006570
650    _2
$a mutace $7 D009154
650    _2
$a telomerasa $x genetika $x metabolismus $7 D019098
650    12
$a telomery $x metabolismus $7 D016615
655    _2
$a časopisecké články $7 D016428
655    _2
$a práce podpořená grantem $7 D013485
700    1_
$a Ekker, Heinz $u Campus Science Support Facilities, Next Generation Sequencing Facility, Vienna, Austria.
700    1_
$a Kusenda, Branislav $u Gregor Mendel Institute, Austrian Academy of Sciences, Vienna, Austria.
700    1_
$a Bulankova, Petra $u Gregor Mendel Institute, Austrian Academy of Sciences, Vienna, Austria.
700    1_
$a Riha, Karel $u Gregor Mendel Institute, Austrian Academy of Sciences, Vienna, Austria; Central European Institute of Technology, Masaryk University, Brno, Czech Republic.
773    0_
$w MED00008920 $t PLoS genetics $x 1553-7404 $g Roč. 10, č. 10 (2014), s. e1004682
856    41
$u https://pubmed.ncbi.nlm.nih.gov/25299252 $y Pubmed
910    __
$a ABA008 $b sig $c sign $y a $z 0
990    __
$a 20160722 $b ABA008
991    __
$a 20160727101420 $b ABA008
999    __
$a ok $b bmc $g 1155715 $s 945573
BAS    __
$a 3
BAS    __
$a PreBMC
BMC    __
$a 2014 $b 10 $c 10 $d e1004682 $e 20141009 $i 1553-7404 $m PLoS genetics $n PLoS Genet $x MED00008920
LZP    __
$a Pubmed-20160722

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...