Casting Light on Life.

IF 1.1 Q4 MEDICINE, RESEARCH & EXPERIMENTAL
Atsushi Miyawaki
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引用次数: 0

Abstract

The behavior of biochemical molecules moving around in cells makes me think of a school of whales wandering in the ocean, captured by the Argus system on the artificial satellite. When bringing a whale back into the sea --- with a transmitter on its dorsal fin, every staff member hopes that it will return safely to a school of its species. A transmitter is now minute in size, but it was not this way before. There used to be some concern that a whale fitted with a transmitter could be given the cold shoulder and thus ostracized by other whales for "wearing something annoying." How is whale's wandering related to the tide or a shoal of small fish? What kind of interaction is there among different species of whales? We human beings have attempted to fully understand this fellow creature in the sea both during and since the age of whale fishing.In a live cell imaging experiment, a luminescent probe replaces a transmitter. We put a luminescent probe on a specific region of a biological molecule and bring it back into a cell. We can then visualize how the molecule behaves in response to external stimulation. Since luminescence is a physical phenomenon, we can extract various kinds of information by making full use of its characteristics.Cruising inside cells in a supermicro corps, gliding down in a microtubule like a roller coaster, pushing our ways through a jungle of chromatin while hoisting a flag of nuclear localization signal --- we are reminded to retain a playful and adventurous perspective at all times. What matters is mobilizing all capabilities of science and giving full play to our imagination. We believe that such serendipitous findings can arise out of such a sportive mind, a frame of mind that prevails when enjoying whale-watching.

照亮生命。
生物化学分子在细胞中移动的行为让我想到了一群在海洋中游荡的鲸鱼,被人造卫星上的阿古斯系统捕获。当把鲸鱼带回大海时——在它的背鳍上安装一个发射器,每个工作人员都希望它能安全返回自己的种群。现在的发射机体积很小,但以前不是这样的。曾经有一些人担心,一头装有发射器的鲸鱼可能会受到冷落,从而被其他鲸鱼排斥,因为它们“穿着令人讨厌的东西”。鲸鱼的游荡与潮水或一群小鱼有什么关系?不同种类的鲸鱼之间有什么样的互动?在捕鲸时代和捕鲸时代以来,我们人类一直试图完全了解海洋中的这种生物。在活细胞成像实验中,用发光探针代替发射器。我们把一个发光探针放在一个生物分子的特定区域,然后把它带回细胞。然后,我们可以可视化分子如何响应外部刺激。由于发光是一种物理现象,我们可以充分利用其特性提取各种信息。在细胞内部巡游,像过山车一样在微管中滑行,在染色质丛林中前进,同时悬挂着核定位信号的旗帜——我们被提醒要时刻保持一种有趣和冒险的视角。重要的是调动一切科学力量,充分发挥我们的想象力。我们相信,这种偶然的发现可以产生于这样一种有趣的心态,一种在享受观鲸时普遍存在的心态。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
KEIO JOURNAL OF MEDICINE
KEIO JOURNAL OF MEDICINE MEDICINE, RESEARCH & EXPERIMENTAL-
CiteScore
3.10
自引率
0.00%
发文量
23
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