National Institute for Basic Biology, Myodaiji, Okazaki, 444 Japan.
Plant Physiol. 1988 Nov;88(3):953-8. doi: 10.1104/pp.88.3.953.
Pulses of a fluorinated analog of leucine, 5',5',5'-trifluoroleucine, reset the phase of the circadian rhythm of K(+) uptake in Lemna gibba G3 under continuous light conditions. The trifluoroleucine pulse caused the largest delay phase-shifts during the early subjective phase but it caused only small phase advances. The action of trifluoroleucine was investigated and the following results were obtained. (a) The uptake of trifluoroleucine was essentially the same at all circadian phases, even though phase shifting was dramatically different at different phases. At effective phases, the magnitude of phase shifting was well correlated with the amount of trifluoroleucine taken up by the duckweed. (b) The trifluoroleucine pulse lowered the endogenous content of valine and leucine but these decreases did not correlate with phase shifting. (c) Protein synthesis was not affected by trifluoroleucine pulses which caused large phase shifts. (d) Pulses of 4-azaleucine, a different structural analog of leucine, also caused phase shifting. However, neither the direction nor the effective times of phase shifting were similar to those of trifluoroleucine. Taken together, these results negate the proposition that trifluoroleucine and azaleucine caused phase shift by disturbing amino acid metabolism and/or inhibiting protein synthesis, but they suggest instead that these analogs are incorporated into some protein(s) which are necessary for normal clock operation.
脉冲的一个氟化类似物亮氨酸,5',5',5'-三氟亮氨酸,复位的相的节律的钾(+)吸收在浮萍 G3 在连续光条件下。三氟亮氨酸脉冲引起的最大延迟相移在早期的主观阶段,但它只导致小的阶段进展。三氟亮氨酸的行动进行了调查,并得出以下结果。(一)三氟亮氨酸的摄取是基本相同的在所有的生理阶段,即使相移是截然不同的在不同的阶段。在有效的阶段,幅度的相移是密切相关的三氟亮氨酸摄取的浮萍。(b)三氟亮氨酸脉冲降低了内源性的缬氨酸和亮氨酸的含量,但这些减少并不与相移相关。(c)蛋白质合成没有受到影响的三氟亮氨酸脉冲引起的大相移。(d)脉冲的 4-azaleucine,一个不同的结构类似物亮氨酸,也引起相移。然而,无论是方向和有效的时间相移是相似的那些三氟亮氨酸。总之,这些结果否定了三氟亮氨酸和 azaleucine 引起相移通过干扰氨基酸代谢和/或抑制蛋白质合成,但它们表明相反,这些类似物被纳入一些蛋白质(S)是必需的正常时钟操作。