• Je něco špatně v tomto záznamu ?

Development of a human mitochondrial oligonucleotide microarray (h-MitoArray) and gene expression analysis of fibroblast cell lines from 13 patients with isolated F1Fo ATP synthase deficiency

A. Čížková, V. Stránecký, R. Ivánek, H. Hartmannová, L. Nosková, L. Piherová, M. Tesařová, H. Hansíková, T. Honzík, J. Zeman, P. Divina, A. Potocká, J. Paul, W. Sperl, JA. Mayr, S. Seneca, J.Houštěk, S. Kmoch

. 2008 ; 9 (38) : .

Jazyk angličtina Země Velká Británie

Perzistentní odkaz   https://www.medvik.cz/link/bmc10034932

Grantová podpora
NR8069 MZ0 CEP - Centrální evidence projektů

BACKGROUND: To strengthen research and differential diagnostics of mitochondrial disorders, we constructed and validated an oligonucleotide microarray (h-MitoArray) allowing expression analysis of 1632 human genes involved in mitochondrial biology, cell cycle regulation, signal transduction and apoptosis. Using h-MitoArray we analyzed gene expression profiles in 9 control and 13 fibroblast cell lines from patients with F1Fo ATP synthase deficiency consisting of 2 patients with mt9205deltaTA microdeletion and a genetically heterogeneous group of 11 patients with not yet characterized nuclear defects. Analysing gene expression profiles, we attempted to classify patients into expected defect specific subgroups, and subsequently reveal group specific compensatory changes, identify potential phenotype causing pathways and define candidate disease causing genes. RESULTS: Molecular studies, in combination with unsupervised clustering methods, defined three subgroups of patient cell lines--M group with mtDNA mutation and N1 and N2 groups with nuclear defect. Comparison of expression profiles and functional annotation, gene enrichment and pathway analyses of differentially expressed genes revealed in the M group a transcription profile suggestive of synchronized suppression of mitochondrial biogenesis and G1/S arrest. The N1 group showed elevated expression of complex I and reduced expression of complexes III, V, and V-type ATP synthase subunit genes, reduced expression of genes involved in phosphorylation dependent signaling along MAPK, Jak-STAT, JNK, and p38 MAP kinase pathways, signs of activated apoptosis and oxidative stress resembling phenotype of premature senescent fibroblasts. No specific functionally meaningful changes, except of signs of activated apoptosis, were detected in the N2 group. Evaluation of individual gene expression profiles confirmed already known ATP6/ATP8 defect in patients from the M group and indicated several candidate disease causing genes for nuclear defects. CONCLUSION: Our analysis showed that deficiency in the ATP synthase protein complex amount is generally accompanied by only minor changes in expression of ATP synthase related genes. It also suggested that the site (mtDNA vs nuclear DNA) and the severity (ATP synthase content) of the underlying defect have diverse effects on cellular gene expression phenotypes, which warrants further investigation of cell cycle regulatory and signal transduction pathways in other OXPHOS disorders and related pharmacological models.

000      
05257naa 2200649 a 4500
001      
bmc10034932
003      
CZ-PrNML
005      
20130815085213.0
008      
101227s2008 xxk e eng||
009      
AR
040    __
$a ABA008 $b cze $c ABA008 $d ABA008 $e AACR2
041    0_
$a eng
044    __
$a xxk
100    1_
$a Čížková, Alena, $d 1981- $7 jo2010566488
245    10
$a Development of a human mitochondrial oligonucleotide microarray (h-MitoArray) and gene expression analysis of fibroblast cell lines from 13 patients with isolated F1Fo ATP synthase deficiency / $c A. Čížková, V. Stránecký, R. Ivánek, H. Hartmannová, L. Nosková, L. Piherová, M. Tesařová, H. Hansíková, T. Honzík, J. Zeman, P. Divina, A. Potocká, J. Paul, W. Sperl, JA. Mayr, S. Seneca, J.Houštěk, S. Kmoch
314    __
$a Center for Applied Genomics, 1st Faculty of Medicine, Charles University, Prague, Czech Republic. acizk@LF1.cuni.cz
520    9_
$a BACKGROUND: To strengthen research and differential diagnostics of mitochondrial disorders, we constructed and validated an oligonucleotide microarray (h-MitoArray) allowing expression analysis of 1632 human genes involved in mitochondrial biology, cell cycle regulation, signal transduction and apoptosis. Using h-MitoArray we analyzed gene expression profiles in 9 control and 13 fibroblast cell lines from patients with F1Fo ATP synthase deficiency consisting of 2 patients with mt9205deltaTA microdeletion and a genetically heterogeneous group of 11 patients with not yet characterized nuclear defects. Analysing gene expression profiles, we attempted to classify patients into expected defect specific subgroups, and subsequently reveal group specific compensatory changes, identify potential phenotype causing pathways and define candidate disease causing genes. RESULTS: Molecular studies, in combination with unsupervised clustering methods, defined three subgroups of patient cell lines--M group with mtDNA mutation and N1 and N2 groups with nuclear defect. Comparison of expression profiles and functional annotation, gene enrichment and pathway analyses of differentially expressed genes revealed in the M group a transcription profile suggestive of synchronized suppression of mitochondrial biogenesis and G1/S arrest. The N1 group showed elevated expression of complex I and reduced expression of complexes III, V, and V-type ATP synthase subunit genes, reduced expression of genes involved in phosphorylation dependent signaling along MAPK, Jak-STAT, JNK, and p38 MAP kinase pathways, signs of activated apoptosis and oxidative stress resembling phenotype of premature senescent fibroblasts. No specific functionally meaningful changes, except of signs of activated apoptosis, were detected in the N2 group. Evaluation of individual gene expression profiles confirmed already known ATP6/ATP8 defect in patients from the M group and indicated several candidate disease causing genes for nuclear defects. CONCLUSION: Our analysis showed that deficiency in the ATP synthase protein complex amount is generally accompanied by only minor changes in expression of ATP synthase related genes. It also suggested that the site (mtDNA vs nuclear DNA) and the severity (ATP synthase content) of the underlying defect have diverse effects on cellular gene expression phenotypes, which warrants further investigation of cell cycle regulatory and signal transduction pathways in other OXPHOS disorders and related pharmacological models.
650    _2
$a buněčné linie $7 D002460
650    _2
$a shluková analýza $7 D016000
650    _2
$a mitochondriální DNA $x genetika $7 D004272
650    _2
$a fibroblasty $7 D005347
650    _2
$a stanovení celkové genové exprese $x metody $x statistika a číselné údaje $7 D020869
650    _2
$a genom mitochondriální $7 D054629
650    _2
$a lidé $7 D006801
650    _2
$a mitochondriální nemoci $7 D028361
650    _2
$a mitochondriální protonové ATPasy $x genetika $x nedostatek $7 D025261
650    _2
$a modely genetické $7 D008957
650    _2
$a sekvenční analýza hybridizací s uspořádaným souborem oligonukleotidů $x metody $x statistika a číselné údaje $7 D020411
650    _2
$a fenotyp $7 D010641
650    _2
$a analýza hlavních komponent $7 D025341
650    _2
$a sekvenční delece $7 D017384
650    _2
$a financování organizované $7 D005381
700    1_
$a Stránecký, Viktor $7 xx0128943
700    1_
$a Ivánek, Robert $7 xx0118825
700    1_
$a Hartmannová, Hana $7 xx0121900
700    1_
$a Nosková, Lenka $7 xx0117961
700    1_
$a Piherová, Lenka $7 xx0169516
700    1_
$a Tesařová, Markéta $7 xx0035013
700    1_
$a Hansíková, Hana $7 xx0064303
700    1_
$a Honzík, Tomáš $7 xx0075651
700    1_
$a Zeman, Jiří, $d 1950- $7 skuk0001517
700    1_
$a Divina, Petr. $7 jo2005274205
700    1_
$a Potocká, Andrea. $7 _AN058953
700    1_
$a Paul, Jan $7 xx0139491
700    1_
$a Sperl, Wolfgang
700    1_
$a Mayr, Johannes A.
700    1_
$a Seneca, Sara
700    1_
$a Houštěk, Josef, $7 xx0030591 $d 1947-
700    1_
$a Kmoch, Stanislav, $d 1963- $7 xx0056529
773    0_
$w MED00008181 $t BMC genomics $g Roč. 9, č. 38 (2008) $x 1471-2164
910    __
$a ABA008 $b x $y 7
990    __
$a 20101227151410 $b ABA008
991    __
$a 20130815085723 $b ABA008
999    __
$a ok $b bmc $g 823369 $s 688796
BAS    __
$a 3
BMC    __
$a 2008 $b 9 $c 38 $m BMC genomics $n BMC Genomics $x MED00008181
GRA    __
$a NR8069 $p MZ0
LZP    __
$a 2011-2B/ewme

Najít záznam