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光敏色素诱导羽扇豆下胚轴切片中核糖核酸酶的从头合成。

Phytochrome-induced synthesis of ribonuclease de novo in lupin hypocotyl sections.

作者信息

Acton G J, Schopfer P

出版信息

Biochem J. 1974 Sep;142(3):449-55. doi: 10.1042/bj1420449a.

Abstract
  1. Density-labelling with 99 atoms% of (2)H(2)O distinguished pre-existing from newly synthesized ribonuclease molecules in sections of developing hypocotyl tissue. 2. Activity profiles of enzyme extracted from the fraction pelletable at 100000g showed heterogeneity after isopycnic centrifugation in CsCl gradients. 3. Measurement of density shifts of the entire heterogeneous band shows that ribonuclease protein is synthesized de novo in both continuous far-red light and darkness. 4. A twofold increase in enzyme activity after irradiation was accompanied by band-broadening and a significantly faster rate of labelling than in darkness. 5. The conclusion is drawn from the experimental evidence and theoretical arguments presented that phytochrome regulates the synthesis of new enzyme molecules against a background of continuous (dark-rate) synthesis and degradation. 6. Further information has been deposited as Supplementary Publication SUP 50033 (3 pages) at the British Library Lending Division (formerly the National Lending Library for Science and Technology), Boston Spa, Yorks. LS23 7BQ, U.K., from whom copies can be obtained on the terms indicated in Biochem. J. (1973), 131, 5.
摘要
  1. 用99原子%的(2)H(2)O进行密度标记,可区分发育中的下胚轴组织切片中预先存在的和新合成的核糖核酸酶分子。2. 从100000g可沉淀级分中提取的酶的活性谱在CsCl梯度等密度离心后显示出异质性。3. 对整个异质带密度变化的测量表明,核糖核酸酶蛋白在连续远红光和黑暗条件下都是重新合成的。4. 照射后酶活性增加两倍,同时伴随着条带变宽以及标记速率明显快于黑暗条件下。5. 根据所提供的实验证据和理论论据得出结论:在连续(黑暗速率)合成和降解的背景下,光敏色素调节新酶分子的合成。6. 更多信息已作为补充出版物SUP 50033(3页)存放在英国图书馆出借部(原国家科学技术出借图书馆),地址为英国约克郡波士顿温泉市LS23 7BQ,可按《生物化学杂志》(1973年)第131卷第5期所示条件从该处获取副本。

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