TY - JOUR
T1 - Ultraviolet B exposure of whole leaves of barley affects structure and functional organization of photosystem II
AU - Barbato, Roberto
AU - Bergo, Elena
AU - Szabò, Ildikò
AU - Dalla Vecchia, Francesca
AU - Giacometti, Giorgio M.
PY - 2000/4/14
Y1 - 2000/4/14
N2 - This study examines the effects of ecologically important levels of ultraviolet B radiation on protein D1 turnover and stability and lateral redistribution of photosystem II. It is shown that ultraviolet B light supported only limited synthesis of protein D1, one of the most important components of photosystem II, whereas it promoted significant degradation of proteins D1 and D2. Furthermore, dephosphorylation of photosystem II subunits was specifically elicited upon exposure to ultraviolet B light. Structural modifications of photosystem II and changes in its lateral distribution between granum membranes and stroma-exposed lamellae were found to be different from those observed after photoinhibition by strong visible light. In particular, more complete dismantling of photosystem II cores was observed. Altogether, the data reported here suggest that ultraviolet B radiation alone fails to activate the photosystem II repair cycle, as hypothesized for visible light. This failure may contribute to the toxic effect of ultraviolet B radiation, which is increasing as a consequence of depletion of stratospheric ozone.
AB - This study examines the effects of ecologically important levels of ultraviolet B radiation on protein D1 turnover and stability and lateral redistribution of photosystem II. It is shown that ultraviolet B light supported only limited synthesis of protein D1, one of the most important components of photosystem II, whereas it promoted significant degradation of proteins D1 and D2. Furthermore, dephosphorylation of photosystem II subunits was specifically elicited upon exposure to ultraviolet B light. Structural modifications of photosystem II and changes in its lateral distribution between granum membranes and stroma-exposed lamellae were found to be different from those observed after photoinhibition by strong visible light. In particular, more complete dismantling of photosystem II cores was observed. Altogether, the data reported here suggest that ultraviolet B radiation alone fails to activate the photosystem II repair cycle, as hypothesized for visible light. This failure may contribute to the toxic effect of ultraviolet B radiation, which is increasing as a consequence of depletion of stratospheric ozone.
UR - http://www.scopus.com/inward/record.url?scp=0034646683&partnerID=8YFLogxK
U2 - 10.1074/jbc.275.15.10976
DO - 10.1074/jbc.275.15.10976
M3 - Article
SN - 0021-9258
VL - 275
SP - 10976
EP - 19982
JO - Journal of Biological Chemistry
JF - Journal of Biological Chemistry
IS - 15
ER -