• Je něco špatně v tomto záznamu ?

Carotenoid-induced non-photochemical quenching in the cyanobacterial chlorophyll synthase-HliC/D complex

DM. Niedzwiedzki, T. Tronina, H. Liu, H. Staleva, J. Komenda, R. Sobotka, RE. Blankenship, T. Polívka,

. 2016 ; 1857 (9) : 1430-1439. [pub] 20160428

Jazyk angličtina Země Nizozemsko

Typ dokumentu časopisecké články, práce podpořená grantem, Research Support, U.S. Gov't, Non-P.H.S.

Perzistentní odkaz   https://www.medvik.cz/link/bmc18017278

Chl synthase (ChlG) is an important enzyme of the Chl biosynthetic pathway catalyzing attachment of phytol/geranylgeraniol tail to the chlorophyllide molecule. Here we have investigated the Flag-tagged ChlG (f.ChlG) in a complex with two different high-light inducible proteins (Hlips) HliD and HliC. The f.ChlG-Hlips complex binds a Chl a and three different carotenoids, β-carotene, zeaxanthin and myxoxanthophyll. Application of ultrafast time-resolved absorption spectroscopy performed at room and cryogenic temperatures revealed excited-state dynamics of complex-bound pigments. After excitation of Chl a in the complex, excited Chl a is efficiently quenched by a nearby carotenoid molecule via energy transfer from the Chl a Qy state to the carotenoid S1 state. The kinetic analysis of the spectroscopic data revealed that quenching occurs with a time constant of ~2ps and its efficiency is temperature independent. Even though due to its long conjugation myxoxanthophyll appears to be energetically best suited for role of Chl a quencher, based on comparative analysis and spectroscopic data we propose that β-carotene bound to Hlips acts as the quencher rather than myxoxanthophyll and zeaxanthin, which are bound at the f.ChlG and Hlips interface. The S1 state lifetime of the quencher has been determined to be 13ps at room temperature and 21ps at 77K. These results demonstrate that Hlips act as a conserved functional module that prevents photodamage of protein complexes during photosystem assembly or Chl biosynthesis.

Citace poskytuje Crossref.org

000      
00000naa a2200000 a 4500
001      
bmc18017278
003      
CZ-PrNML
005      
20180515103127.0
007      
ta
008      
180515s2016 ne f 000 0|eng||
009      
AR
024    7_
$a 10.1016/j.bbabio.2016.04.280 $2 doi
035    __
$a (PubMed)27133505
040    __
$a ABA008 $b cze $d ABA008 $e AACR2
041    0_
$a eng
044    __
$a ne
100    1_
$a Niedzwiedzki, Dariusz M $u Photosynthetic Antenna Research Center, Washington University in Saint Louis, 1 Brookings Drive, St. Louis, MO 63130, USA.
245    10
$a Carotenoid-induced non-photochemical quenching in the cyanobacterial chlorophyll synthase-HliC/D complex / $c DM. Niedzwiedzki, T. Tronina, H. Liu, H. Staleva, J. Komenda, R. Sobotka, RE. Blankenship, T. Polívka,
520    9_
$a Chl synthase (ChlG) is an important enzyme of the Chl biosynthetic pathway catalyzing attachment of phytol/geranylgeraniol tail to the chlorophyllide molecule. Here we have investigated the Flag-tagged ChlG (f.ChlG) in a complex with two different high-light inducible proteins (Hlips) HliD and HliC. The f.ChlG-Hlips complex binds a Chl a and three different carotenoids, β-carotene, zeaxanthin and myxoxanthophyll. Application of ultrafast time-resolved absorption spectroscopy performed at room and cryogenic temperatures revealed excited-state dynamics of complex-bound pigments. After excitation of Chl a in the complex, excited Chl a is efficiently quenched by a nearby carotenoid molecule via energy transfer from the Chl a Qy state to the carotenoid S1 state. The kinetic analysis of the spectroscopic data revealed that quenching occurs with a time constant of ~2ps and its efficiency is temperature independent. Even though due to its long conjugation myxoxanthophyll appears to be energetically best suited for role of Chl a quencher, based on comparative analysis and spectroscopic data we propose that β-carotene bound to Hlips acts as the quencher rather than myxoxanthophyll and zeaxanthin, which are bound at the f.ChlG and Hlips interface. The S1 state lifetime of the quencher has been determined to be 13ps at room temperature and 21ps at 77K. These results demonstrate that Hlips act as a conserved functional module that prevents photodamage of protein complexes during photosystem assembly or Chl biosynthesis.
650    _2
$a bakteriální proteiny $x chemie $7 D001426
650    _2
$a ligasy tvořící vazby C-O $x chemie $7 D019729
650    _2
$a karotenoidy $x farmakologie $7 D002338
650    _2
$a sinice $x enzymologie $7 D000458
650    _2
$a světlosběrné proteinové komplexy $x chemie $7 D045342
650    _2
$a fotolýza $7 D010782
655    _2
$a časopisecké články $7 D016428
655    _2
$a práce podpořená grantem $7 D013485
655    _2
$a Research Support, U.S. Gov't, Non-P.H.S. $7 D013486
700    1_
$a Tronina, Tomasz $u Department of Chemistry, Wroclaw University of Environmental and Life Sciences, 50-375 Wroclaw, Poland.
700    1_
$a Liu, Haijun $u Photosynthetic Antenna Research Center, Washington University in Saint Louis, 1 Brookings Drive, St. Louis, MO 63130, USA; Department of Biology, Washington University in St. Louis, 1 Brookings, Drive. St. Louis, MO 63130, USA.
700    1_
$a Staleva, Hristina $u Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic.
700    1_
$a Komenda, Josef $u Centre Algatech, Institute of Microbiology, Academy of Sciences of the Czech Republic, Třeboň, Czech Republic.
700    1_
$a Sobotka, Roman $u Centre Algatech, Institute of Microbiology, Academy of Sciences of the Czech Republic, Třeboň, Czech Republic.
700    1_
$a Blankenship, Robert E $u Photosynthetic Antenna Research Center, Washington University in Saint Louis, 1 Brookings Drive, St. Louis, MO 63130, USA; Department of Biology, Washington University in St. Louis, 1 Brookings, Drive. St. Louis, MO 63130, USA; Department of Chemistry, Washington University in St. Louis, 1 Brookings, Drive. St. Louis, MO 63130, USA.
700    1_
$a Polívka, Tomáš $u Faculty of Science, University of South Bohemia, České Budějovice, Czech Republic. Electronic address: tpolivka@jcu.cz.
773    0_
$w MED00009314 $t Biochimica et biophysica acta $x 0006-3002 $g Roč. 1857, č. 9 (2016), s. 1430-1439
856    41
$u https://pubmed.ncbi.nlm.nih.gov/27133505 $y Pubmed
910    __
$a ABA008 $b sig $c sign $y a $z 0
990    __
$a 20180515 $b ABA008
991    __
$a 20180515103301 $b ABA008
999    __
$a ok $b bmc $g 1300902 $s 1014118
BAS    __
$a 3
BAS    __
$a PreBMC
BMC    __
$a 2016 $b 1857 $c 9 $d 1430-1439 $e 20160428 $i 0006-3002 $m Biochimica et biophysica acta $n Biochim Biophys Acta $x MED00009314
LZP    __
$a Pubmed-20180515

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...