TY - JOUR
T1 - Autophagy and metacaspase determine the mode of cell death in plants
AU - Minina, Alyona
AU - Filonova, Lada
AU - Fukada, Kazutake
AU - Savenkov, Eugene
AU - Gogvadze, Vladimir
AU - Clapham, David
AU - Sanchez, Vera Victoria
AU - Suarez, Maria F.
AU - Zhivotovsky, Boris
AU - Daniel, Geoffrey
AU - Smertenko, A
AU - Bozhkov, Peter
PY - 2013
Y1 - 2013
N2 - Although animals eliminate apoptotic cells using macrophages, plants use cell corpses throughout development and disassemble cells in a cell-autonomous manner by vacuolar cell death. During vacuolar cell death, lytic vacuoles gradually engulf and digest the cytoplasmic content. On the other hand, acute stress triggers an alternative cell death, necrosis, which is characterized by mitochondrial dysfunction, early rupture of the plasma membrane, and disordered cell disassembly. How both types of cell death are regulated remains obscure. In this paper, we show that vacuolar death in the embryo suspensor of Norway spruce requires autophagy. In turn, activation of autophagy lies downstream of metacaspase mcII-Pa, a key protease essential for suspensor cell death. Genetic suppression of the metacaspase-autophagy pathway induced a switch from vacuolar to necrotic death, resulting in failure of suspensor differentiation and embryonic arrest. Our results establish metacaspase-dependent autophagy as a bona fide mechanism that is responsible for cell disassembly during vacuolar cell death and for inhibition of necrosis.
AB - Although animals eliminate apoptotic cells using macrophages, plants use cell corpses throughout development and disassemble cells in a cell-autonomous manner by vacuolar cell death. During vacuolar cell death, lytic vacuoles gradually engulf and digest the cytoplasmic content. On the other hand, acute stress triggers an alternative cell death, necrosis, which is characterized by mitochondrial dysfunction, early rupture of the plasma membrane, and disordered cell disassembly. How both types of cell death are regulated remains obscure. In this paper, we show that vacuolar death in the embryo suspensor of Norway spruce requires autophagy. In turn, activation of autophagy lies downstream of metacaspase mcII-Pa, a key protease essential for suspensor cell death. Genetic suppression of the metacaspase-autophagy pathway induced a switch from vacuolar to necrotic death, resulting in failure of suspensor differentiation and embryonic arrest. Our results establish metacaspase-dependent autophagy as a bona fide mechanism that is responsible for cell disassembly during vacuolar cell death and for inhibition of necrosis.
UR - https://res.slu.se/id/publ/52657
U2 - 10.1083/jcb.201307082
DO - 10.1083/jcb.201307082
M3 - Journal article
C2 - 24344187
SN - 0021-9525
VL - 203
SP - 917
EP - 927
JO - Journal of Cell Biology
JF - Journal of Cell Biology
IS - 6
ER -