Bereich Pflanzenphysiologie, Institut für Allgemeine Botanik und Pflanzenphysiologie der Justus-Liebig-Universität Gießen, Heinrich-Buff-Ring 54-62, D-6300, Gießen, Federal Republic of Germany.
Planta. 1979 Jan;145(4):331-7. doi: 10.1007/BF00388357.
The synthesis of cell wall mannan and the activities of guanosine-diphosphate-mannose-pyrophosphorylase (EC2.7.7.13) and mannan synthetase were studied during the development of nucleate and enucleated cells of the alga Acetabularia mediterranea. The activities of both enzymes are relatively high as long as the cells grow and synthesize mannans. With termination of growth and mannan synthesis, the activities of both enzymes, but especially of mannan synthetase, drop to a low value. Furthermore, the activities of both enzymes are distributed in the cell along an apical-basal gradient. High activities are present in the apical regions of the cell where growth and mannan synthesis mainly occur, whereas in the basal region, growth, mannan synthesis and the activity of the two enzymes are slight. Since the in vitro activity of GDP-Man-pyr is at least 100 times higher than that of mannan synthetase, it was concluded that mannan synthetase activity is the limiting factor in mannan synthesis. This conclusion is supported by the determined pool sizes of Fru 6-P, Man 6-P, Man 1-P and GDP-Man during the development of the cells. The control of mannan synthesis and with it cell wall formation and growth through the regulation of mannan synthetase activity is discussed.
在研究地中海伞藻有核和无核细胞的发育过程中,我们研究了细胞壁甘露聚糖的合成以及鸟苷二磷酸甘露糖焦磷酸化酶(EC2.7.7.13)和甘露聚糖合成酶的活性。只要细胞生长并合成甘露聚糖,这两种酶的活性就相对较高。随着生长和甘露聚糖合成的终止,这两种酶的活性,但特别是甘露聚糖合成酶的活性下降到一个较低的值。此外,这两种酶的活性在细胞中沿着顶端-基底梯度分布。在细胞的顶端区域,生长和甘露聚糖合成主要发生,因此酶的活性较高,而在基底区域,生长、甘露聚糖合成和两种酶的活性较弱。由于 GDP-Man-pyr 的体外活性至少比甘露聚糖合成酶高 100 倍,因此可以得出结论,甘露聚糖合成酶活性是甘露聚糖合成的限制因素。这一结论得到了在细胞发育过程中测定的 Fru 6-P、Man 6-P、Man 1-P 和 GDP-Man 池大小的支持。我们讨论了通过调节甘露聚糖合成酶活性来控制甘露聚糖合成以及细胞壁形成和生长的问题。