果蝇α -spectrin重组光谱蛋白14、14-15、14-16和14-17段的电双折射。

Biochimica et biophysica acta Pub Date : 1999-03-19
A Bjørkøy, A Mikkelsen, A Elgsaeter
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引用次数: 0

摘要

谱蛋白家族的成员可以在许多不同的细胞和生物体中找到。在所有研究的案例中,这些蛋白质的主要功能作用被认为是结构而不是酶。所有的谱蛋白都是高度拉长的,主要由同源重复序列组成,构成串联连接的刚性片段。人们普遍认为,谱函数的细节主要取决于段之间连接的灵活性。在这里,我们报告了一项研究,通过研究来自果蝇α -spectrin的重组spectrin片段的瞬态电双折射,分别由片段14、14-15、14-16和14-17组成。瞬态电双折射在很大程度上取决于分子的长度和柔韧性。我们发现,第14段的双折射弛豫时间在4℃下测量,但在20℃下缩放到预期值,在pH为7.5时等于16 ns(+/-15%),离子强度为6 mM。这与该单段是刚性的,长5nm,轴向比约为2相一致。在相同的条件下,14-15、14-16和14-17片段的弛豫时间分别为45、39和164 ns(均为+/-20%),在20℃的条件下,当温度升高到37℃时,这些多片段片段的主要弛豫时间分别增加到46、80和229 ns(均为+/-20%)。当离子强度和德拜屏蔽较低时,即使在生理温度下,这些短碎片的动力学也与具有相同长度和轴向比的完全伸展的弱弯曲棒几乎相同。当离子强度增加到85 mM时,这些多片段片段的主弛豫时间减少了20-50%,这表明在生理盐和温度条件下,2-4段长的片段中的链接表现出明显的热诱导弯曲。假设重组spectrin片段可以作为天然spectrin的模型,这意味着,在生理条件下,含有20-40个片段的天然spectrin蛋白的整体构象动力学相当于柔性聚合物的构象动力学。
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Electric birefringence of recombinant spectrin segments 14, 14-15, 14-16, and 14-17 from Drosophila alpha-spectrin.

Members of the spectrin protein family can be found in many different cells and organisms. In all cases studied, the major functional role of these proteins is believed to be structural rather than enzymatic. All spectrin proteins are highly elongated and consist mainly of homologous repeats that constitute rigid segments connected in tandem. It is commonly believed that the details of the spectrin function depend critically on the flexibility of the links between the segments. Here we report on a work addressing this question by studying the transient electric birefringence of recombinant spectrin fragments consisting of segments 14, 14-15, 14-16, and 14-17, respectively, from Drosophila alpha-spectrin. Transient electric birefringence depends sharply on both molecular length and flexibility. We found that the birefringence relaxation time of segment 14 measured at 4 degrees C, but scaled to what is expected at 20 degrees C, equals 16 ns (+/-15%) at pH 7.5 and ionic strength 6 mM. This is consistent with this single segment being rigid, 5 nm long and having an axial ratio equal to about two. Under the same conditions, segments 14-15, 14-16 and 14-17 show relaxation times of 45, 39 and 164 ns (all +/-20%), respectively, scaled to what is expected at 20 degrees C. When the temperature is increased to 37 degrees C the main relaxation time for each of these multisegment fragments, scaled to what is expected at 20 degrees C, increased to 46, 80, and 229 ns (all +/-20%), respectively. When the ionic strength and the Debye shielding is low, the dynamics of these short fragments even at physiological temperature is nearly the same as for fully extended weakly bending rods with the same lengths and axial ratios. When the ionic strength is increased to 85 mM, the main relaxation time for each of these multisegment fragments is reduced 20-50% which suggests that at physiological salt and temperature conditions the links in 2-4-segment-long fragments exhibit significant thermally induced flexing. Provided that the recombinant spectrin fragments can serve as a model for native spectrin, this implies that, at physiological conditions, the overall conformational dynamics of a native spectrin protein containing 20-40 segments equals that of a flexible polymer.

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