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小球藻己糖转运的调控:诱导和周转的特性。

Regulation of Hexose Transport in Chlorella vulgaris: Characteristics of Induction and Turnover.

机构信息

Fachbereich Biologie der Universität Regensburg, 8400 Regensburg, Universitätsstr. 31, Germany.

出版信息

Plant Physiol. 1974 Jan;53(1):14-20. doi: 10.1104/pp.53.1.14.

Abstract

Of nine species of unicellular algae tested, Chlorella vulgaris showed the highest inducibility for an active hexose transport system. Whereas the rate of uptake in all other species was increased by induction less than 5-fold, it was increased more than 400-fold in one strain of C. vulgaris. With glucose as inducer, the minimum time necessary to synthesize inducible proteins of the transport system was 15 minutes. The Km for induction with glucose is 5 mum and with 6-deoxyglucose 1 mm. The inducing sugars have to penetrate the cells to be effective.Evidence indicating that regulation of induction occurs at the transcriptional level was obtained. The induction was inhibited by 6-methylpurine. When cells were exposed to induce in the presence of actidione no increase in transport activity could be measured. After removal of actidione as well as the inducer, an increased uptake activity was observed after 30 to 60 minutes. The induced uptake system showed a turnover with a half-life of 4 to 6 hours at 26 C under nongrowing conditions; at 0 C turnover was negligible. Turnover was partly inhibited by anaerobic condition and by actidione; it was accelerated under growing conditions.

摘要

在测试的九种单细胞藻类中,普通小球藻表现出对活性己糖转运系统的最高诱导能力。而在所有其他物种中,吸收速率的增加都不到 5 倍,而在一株普通小球藻中则增加了 400 多倍。以葡萄糖为诱导剂,合成转运系统可诱导蛋白所需的最小时间为 15 分钟。葡萄糖的 Km 诱导值为 5 µm,6-脱氧葡萄糖为 1 mm。诱导糖必须穿透细胞才能发挥作用。获得了表明诱导调节发生在转录水平的证据。6-甲基嘌呤抑制诱导。当细胞在放线酮存在下暴露于诱导物时,无法测量到转运活性的增加。在去除放线酮和诱导物后,在 26°C 下,非生长条件下 30 至 60 分钟后观察到吸收活性增加。在非生长条件下,诱导的摄取系统的半衰期为 4 至 6 小时;在 0°C 下,半衰期可忽略不计。在厌氧条件和放线酮下,周转率部分受到抑制;在生长条件下,周转率加快。

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