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1.

Cotranslational formation of active photoprotein obelin in a cell-free translation system: Direct ultrahigh sensitive measure of the translation course/N. G. Berestovskaya [et al.] // ANALYTICAL BIOCHEMISTRY:ACADEMIC PRESS INC, 1999. т.Vol. 268,N Is. 1.-С.72-78
2.

Cotranslational formation of active photoprotein obelin in a cell-free translation system: Direct ultrahigh sensitive measure of the translation course/N. G. Berestovskaya [et al.] // ANALYTICAL BIOCHEMISTRY:ACADEMIC PRESS INC, 1999. т.Vol. 268,N Is. 1.-С.72-78
3.

Recombinant obelin: Cloning and expression of cDNA, purification, and characterization as a calcium indicator/B. A. Illarionov [et al.] // BIOLUMINESCENCE AND CHEMILUMINESCENCE, PT C. Ser. METHODS IN ENZYMOLOGY:ACADEMIC PRESS INC, 2000. т.Vol. 305.-С.223-249
4.

Ca2+-regulated photoproteins: Structural insight into the bioluminescence mechanism/E. S. Vysotski, J. .. Lee // ACCOUNTS OF CHEMICAL RESEARCH:AMER CHEMICAL SOC, 2004. т.Vol. 37,N Is. 6.-С.405-415
5.

Interchange of aequorin and obelin bioluminescence color is determined by substitution of one active site residue of each photoprotein/G. A. Stepanyuk [et al.] // FEBS LETTERS:ELSEVIER SCIENCE BV, 2005. т.Vol. 579,N Is. 5.-С.1008-1014
6.

All three Ca2+-binding loops of photoproteins bind calcium ions: The crystal structures of calcium-loaded apo-aequorin and apo-obelin/L. .. Deng [et al.] // PROTEIN SCIENCE:COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT, 2005. т.Vol. 14,N Is. 3.-С.663-675
7.

Interchange of aequorin and obelin bioluminescence color is determined by substitution of one active site residue of each photoprotein/G. A. Stepanyuk [et al.] // FEBS LETTERS:ELSEVIER SCIENCE BV, 2005. т.Vol. 579,N Is. 5.-С.1008-1014
8.

Green-fluorescent protein from the bioluminescent jellyfish Clytia gregaria: cDNA cloning, expression, and characterization of novel recombinant protein/S. V. Markova [et al.] // PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES:ROYAL SOC CHEMISTRY, 2010. т.Vol. 9,N Is. 6.-С.757-765
9.

The light-sensitive photoprotein berovin from the bioluminescent ctenophore Beroe abyssicola: a novel type of Ca2+-regulated photoprotein/S. V. Markova [et al.] // FEBS JOURNAL:WILEY-BLACKWELL, 2012. т.Vol. 279,N Is. 5.-С.856-870
10.

Bioluminescent and spectroscopic properties of His-Trp-Tyr triad mutants of obelin and aequorin/E. V. Eremeeva [et al.] // PHOTOCHEMICAL & PHOTOBIOLOGICAL SCIENCES:ROYAL SOC CHEMISTRY, 2013. т.Vol. 12,N Is. 6.-С.1016-1024
11.

Role of key residues of obelin in coelenterazine binding and conversion into 2-hydroperoxy adduct/E. V. Eremeeva [et al.] // JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY:ELSEVIER SCIENCE SA, 2013. т.Vol. 127.-С.133-139
12.

Structures of the Ca2+-regulated photoprotein obelin Y138F mutant before and after bioluminescence support the catalytic function of a water molecule in the reaction/P. V. Natashin [et al.] // ACTA CRYSTALLOGRAPHICA SECTION D-BIOLOGICAL CRYSTALLOGRAPHY:WILEY-BLACKWELL, 2014. т.Vol. 70.-С.720-732
13.

Characterization of hydromedusan Ca2+-regulated photoproteins as a tool for measurement of Ca(2+)concentration/N. P. Malikova [et al.] // ANALYTICAL AND BIOANALYTICAL CHEMISTRY:SPRINGER HEIDELBERG, 2014. т.Vol. 406,N Is. 23.-С.5715-5726
14.

Bioluminescent and biochemical properties of Cys-free Ca2+-regulated photoproteins obelin and aequorin/E. V. Eremeeva, E. S. Vysotski // JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY:ELSEVIER SCIENCE SA, 2017. т.Vol. 174.-С.97-105
15.

Unanimous Model for Describing the Fast Bioluminescence Kinetics of Ca2+-regulated Photoproteins of Different Organisms/E. V. Eremeeva [et al.] // PHOTOCHEMISTRY AND PHOTOBIOLOGY:WILEY, 2017. т.Vol. 93,N Is. 2.-С.495-502
 

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