• Je něco špatně v tomto záznamu ?

Frataxin, a conserved mitochondrial protein, in the hydrogenosome of Trichomonas vaginalis

P Dolezal, A Dancis, E Lesuisse, R Sutak, I Hrdy, TM Embley, J Tachezy

. 2007 ; 6 (8) : 1431-1438.

Jazyk angličtina Země Spojené státy americké

Perzistentní odkaz   https://www.medvik.cz/link/bmc11002979

Recent data suggest that frataxin plays a key role in eukaryote cellular iron metabolism, particularly in mitochondrial heme and iron-sulfur (FeS) cluster biosynthesis. We have now identified a frataxin homologue (T. vaginalis frataxin) from the human parasite Trichomonas vaginalis. Instead of mitochondria, this unicellular eukaryote possesses hydrogenosomes, peculiar organelles that produce hydrogen but nevertheless share common ancestry with mitochondria. T. vaginalis frataxin contains conserved residues implicated in iron binding, and in silico, it is predicted to form a typical alpha-beta sandwich motif. The short N-terminal extension of T. vaginalis frataxin resembles presequences that target proteins to hydrogenosomes, a prediction confirmed by the results of overexpression of T. vaginalis frataxin in T. vaginalis. When expressed in the mitochondria of a frataxin-deficient Saccharomyces cerevisiae strain, T. vaginalis frataxin partially restored defects in heme and FeS cluster biosynthesis. Although components of heme synthesis or heme-containing proteins have not been found in T. vaginalis to date, T. vaginalis frataxin was also shown to interact with S. cerevisiae ferrochelatase by using a Biacore assay. The discovery of conserved iron-metabolizing pathways in mitochondria and hydrogenosomes provides additional evidence not only of their common evolutionary history, but also of the fundamental importance of this pathway for eukaryotes.

000      
03138naa 2200445 a 4500
001      
bmc11002979
003      
CZ-PrNML
005      
20210216160016.0
008      
110225s2007 xxu e eng||
009      
AR
040    __
$a ABA008 $b cze $c ABA008 $d ABA008 $e AACR2
041    0_
$a eng
044    __
$a xxu
100    1_
$a Doležal, Pavel, $d 1975- $7 xx0257242
245    10
$a Frataxin, a conserved mitochondrial protein, in the hydrogenosome of Trichomonas vaginalis / $c P Dolezal, A Dancis, E Lesuisse, R Sutak, I Hrdy, TM Embley, J Tachezy
314    __
$a Department of Parasitology, Charles University, Faculty of Science, Vinicna 7, 128 44 Prague, Czech Republic.
520    9_
$a Recent data suggest that frataxin plays a key role in eukaryote cellular iron metabolism, particularly in mitochondrial heme and iron-sulfur (FeS) cluster biosynthesis. We have now identified a frataxin homologue (T. vaginalis frataxin) from the human parasite Trichomonas vaginalis. Instead of mitochondria, this unicellular eukaryote possesses hydrogenosomes, peculiar organelles that produce hydrogen but nevertheless share common ancestry with mitochondria. T. vaginalis frataxin contains conserved residues implicated in iron binding, and in silico, it is predicted to form a typical alpha-beta sandwich motif. The short N-terminal extension of T. vaginalis frataxin resembles presequences that target proteins to hydrogenosomes, a prediction confirmed by the results of overexpression of T. vaginalis frataxin in T. vaginalis. When expressed in the mitochondria of a frataxin-deficient Saccharomyces cerevisiae strain, T. vaginalis frataxin partially restored defects in heme and FeS cluster biosynthesis. Although components of heme synthesis or heme-containing proteins have not been found in T. vaginalis to date, T. vaginalis frataxin was also shown to interact with S. cerevisiae ferrochelatase by using a Biacore assay. The discovery of conserved iron-metabolizing pathways in mitochondria and hydrogenosomes provides additional evidence not only of their common evolutionary history, but also of the fundamental importance of this pathway for eukaryotes.
650    _2
$a sekvence aminokyselin $7 D000595
650    _2
$a zvířata $7 D000818
650    _2
$a konzervovaná sekvence $7 D017124
650    _2
$a proteiny vázající železo $x genetika $x metabolismus $7 D033862
650    _2
$a mitochondriální proteiny $x genetika $x metabolismus $7 D024101
650    _2
$a molekulární modely $7 D008958
650    _2
$a molekulární sekvence - údaje $7 D008969
650    _2
$a organely $x metabolismus $7 D015388
650    _2
$a sekvenční seřazení $7 D016415
650    _2
$a genetická transkripce $7 D014158
650    _2
$a Trichomonas vaginalis $x genetika $x metabolismus $7 D014246
650    _2
$a financování organizované $7 D005381
700    1_
$a Dancis, Andrew
700    1_
$a Lesuisse, Emmanuel
700    1_
$a Sutak, Robert
700    1_
$a Hrdý, Ivan, $d 1928-2010 $7 jk01042765
700    1_
$a Embley, T. Martin
700    1_
$a Tachezy, Jan, $d 1958- $7 mzk2008442769
773    0_
$t Eukaryotic Cell $w MED00007011 $g Roč. 6, č. 8 (2007), s. 1431-1438 $x 1535-9778
910    __
$a ABA008 $b x $y 1 $z 0
990    __
$a 20110413113346 $b ABA008
991    __
$a 20210216160013 $b ABA008
999    __
$a ok $b bmc $g 830388 $s 694971
BAS    __
$a 3
BMC    __
$a 2007 $b 6 $c 8 $d 1431-1438 $i 1535-9778 $m Eukaryotic cell $n Eukaryot Cell $x MED00007011
LZP    __
$a 2011-2B/dkme

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...