Gómez-Casati Diego F, Cortassa Sonia, Aon Miguel A, Iglesias Alberto A
Instituto Tecnológico de Chascomús (IIB INTECH), Camino de Circunvalación Laguna km 6, CC 164 (7130) Chascomús, Buenos Aires, Argentina.
Planta. 2003 Apr;216(6):969-75. doi: 10.1007/s00425-002-0949-4. Epub 2003 Jan 28.
The glycogen synthetic pathway operates ultrasensitively as a function of the ADPglucose pyrophosphorylase (ADPGlcPPase) allosteric effectors, 3-phosphoglycerate and Pi, in permeabilized cells of the cyanobacterium Anabaena PCC 7120. In vitro data previously showed that the ultrasensitive behavior of ADPGlcPPase depends upon cross-talk between the two allosteric effectors, the enzyme's response being additionally modulated by molecular crowding [D.F. Gómez Casatiet al. (2000) Biochem J 350:139-147]. In the present work we show, experimentally and with a mathematical model, that alpha-1,4-glucan synthesis is also ultrasensitive in cells due to the propagation of the switch-like behavior of ADPGlcPPase to the synthetic pathway. Amplifications of up to 20-fold in storage-polysaccharide synthesis can be achieved with a modest 6.7-fold increase in 3-phosphoglycerate in the presence of 5 mM Pi in contrast to the 30-fold necessary in its absence. This is the first time that this phenomenon has been reported to occur in the glycogen synthetic pathway of a photosynthetic prokaryote. The implications of the results for plant cell physiology during light-dark transitions are discussed.
在蓝藻鱼腥藻PCC 7120的透化细胞中,糖原合成途径作为1,6-二磷酸葡萄糖焦磷酸化酶(ADPGlcPPase)变构效应物3-磷酸甘油酸和无机磷酸(Pi)的函数,表现出超敏感性。此前的体外数据表明,ADPGlcPPase的超敏感行为取决于两种变构效应物之间的相互作用,分子拥挤对该酶的反应有额外的调节作用[D.F. Gómez Casatiet al.(2000)Biochem J 350:139 - 147]。在本研究中,我们通过实验和数学模型表明,由于ADPGlcPPase的开关样行为传播到合成途径,α-1,4-葡聚糖合成在细胞中也具有超敏感性。在存在5 mM Pi的情况下,3-磷酸甘油酸适度增加6.7倍,可使储存多糖合成放大至20倍,而在不存在Pi的情况下则需要30倍的增加。这是首次报道这种现象发生在光合原核生物的糖原合成途径中。讨论了这些结果对植物细胞在光暗转换期间生理的影响。