AbstractThe pigment content of isolated reaction centers of photosystem II was modified using an exchange protocol similar to that used for purple bacterial reaction centers. With this method, which is based on incubation of reaction centers at elevated temperature with an excess of chemically modified pigments, it was possible to incorporate [3-acetyl]-chlorophyll a and [Zn]-chlorophyll a into photosystem II reaction centers. Pigment exchange has been verified by absorption, circular dichroism and fluorescence spectroscopy, and quantitated by HPLC analysis of pigment extracts
Certain cyanobacteria synthesize chlorophyll molecules (Chl d and Chl f) that absorb in the far-red ...
Photosystem II reaction centers comprised of the D1, D2 and cytochrome b-559 polypeptides were isola...
AbstractChanges in excitonic interactions of photosystem II (PSII) reaction centre (RC) pigments upo...
AbstractThe pigment content of isolated reaction centers of photosystem II was modified using an exc...
AbstractIsolated reaction centers of photosystem II with an altered pigment content were obtained by...
AbstractPigment-depleted Photosystem II reaction centers (PS II-RCs) from a higher plant (pea) conta...
AbstractThe stoichiometry of chlorophyll a, pheophytin α and β-carotene in the photochemical reactio...
AbstractThe photosystem (PS) I photosynthetic reaction center was modified thorough the selective ex...
AbstractThe native pheophytin a (Pheo a) in isolated reaction centers of photosystem II (PSII RCs) h...
Incubation of photosynthetic reaction centers from Rhodobacter sphaeroides R26 with exogenous 132-OH...
AbstractThe chlorophyll levels in pigment proteins of photosystem II were investigated by using phot...
AbstractChlorophyll (Chl) a in a cyanobacterium Synechocystis sp. PCC 6803 was replaced with di-viny...
AbstractAbsorbance difference spectra associated with the light-induced formation of functional stat...
Abstract[3-Vinyl]-132-OH-bacteriochlorophyll a has been selectively exchanged against native bacteri...
AbstractIt is now well established that the isolated photosystem II (PS II) reaction center complex ...
Certain cyanobacteria synthesize chlorophyll molecules (Chl d and Chl f) that absorb in the far-red ...
Photosystem II reaction centers comprised of the D1, D2 and cytochrome b-559 polypeptides were isola...
AbstractChanges in excitonic interactions of photosystem II (PSII) reaction centre (RC) pigments upo...
AbstractThe pigment content of isolated reaction centers of photosystem II was modified using an exc...
AbstractIsolated reaction centers of photosystem II with an altered pigment content were obtained by...
AbstractPigment-depleted Photosystem II reaction centers (PS II-RCs) from a higher plant (pea) conta...
AbstractThe stoichiometry of chlorophyll a, pheophytin α and β-carotene in the photochemical reactio...
AbstractThe photosystem (PS) I photosynthetic reaction center was modified thorough the selective ex...
AbstractThe native pheophytin a (Pheo a) in isolated reaction centers of photosystem II (PSII RCs) h...
Incubation of photosynthetic reaction centers from Rhodobacter sphaeroides R26 with exogenous 132-OH...
AbstractThe chlorophyll levels in pigment proteins of photosystem II were investigated by using phot...
AbstractChlorophyll (Chl) a in a cyanobacterium Synechocystis sp. PCC 6803 was replaced with di-viny...
AbstractAbsorbance difference spectra associated with the light-induced formation of functional stat...
Abstract[3-Vinyl]-132-OH-bacteriochlorophyll a has been selectively exchanged against native bacteri...
AbstractIt is now well established that the isolated photosystem II (PS II) reaction center complex ...
Certain cyanobacteria synthesize chlorophyll molecules (Chl d and Chl f) that absorb in the far-red ...
Photosystem II reaction centers comprised of the D1, D2 and cytochrome b-559 polypeptides were isola...
AbstractChanges in excitonic interactions of photosystem II (PSII) reaction centre (RC) pigments upo...