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首页> 外文期刊>The biochemical journal >Changes in enzymic activities of nucleoside diphosphate sugar interconversions during differentiation of cambium to xylem in pine and fir
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Changes in enzymic activities of nucleoside diphosphate sugar interconversions during differentiation of cambium to xylem in pine and fir

机译:松树和冷杉形成层向木质部的分化过程中核苷二磷酸糖相互转化的酶活性变化

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摘要

pA protein fraction [precipitate obtained between 40 and 65% (NH4)2SO4 satn.] prepared from cambial cells, differentiating xylem cells and differentiated xylem cells of pine and fir trees contained all the enzymes required for the nucleoside diphosphate sugar interconversions. By using UDP-D-[U-14C]glucose or UDP-D-[U-14C]galactose, UDP-D-[U-14C-]glucuronic acid and UDP-D-[U-14C]xylose as substrates, the activities of UDP-D-galactose 4-epimerase (DC 5.1.3.2), UDP-D-xylose 4-epimerase(EC 5.1.3.5), UDP-D-glucose dehydrogenase (EC 1.1.1.22) and UDP-D-glucuronate 4-epimerase (EC5.1.3.6), UDP-d-glucuronate decarboxylase (EC 4.1.1.35) were measured at different stages of cell-wall development. The specific activities and the activities per cell of these enzymes varied during differentiation of cambium to xylem according to the type polysaccharide synthesized. Variations were also found between the two species investigated. These data, compared with those obtained in out previous work on angiosperms [see the preceding paper, Dalessandro & Northcote (1977) Biochem. J. 162, 267-279], suggest that some control of polysaccharide synthesis operates at the level of the formation of the precursors of pectin and hemicellulose syntheses./p
机译:p由松树和杉树的冈比亚细胞,分化木质部细胞和分化木质部细胞制备的蛋白质级分[在40%至65%(NH4)2SO4饱和状态下获得的沉淀物]包含核苷二磷酸糖相互转化所需的所有酶。通过使用UDP-D- [U-14C]葡萄糖或UDP-D- [U-14C]半乳糖,UDP-D- [U-14C-]葡萄糖醛酸和UDP-D- [U-14C]木糖, UDP-D-半乳糖4-表异构酶(DC 5.1.3.2),UDP-D-木糖4-表异构酶(EC 5.1.3.5),UDP-D-葡萄糖脱氢酶(EC 1.1.1.22)和UDP-D-的活性在细胞壁发育的不同阶段测量了葡萄糖醛酸4-表异构酶(EC5.1.3.6),UDP-d-葡萄糖醛酸脱羧酶(EC 4.1.1.35)。根据合成的多糖类型,在形成层形成木质部的过程中,这些酶的比活和每个酶的活度会发生变化。在两个被调查物种之间也发现了变异。这些数据与以前在被子植物研究中获得的数据相比[见前文Dalessandro& A. Northcote(1977)生物化学。 J. 162,267-279],表明对多糖合成的某些控制在果胶和半纤维素合成前体的形成水平上进行。

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