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低浓度尿素对磷酸化酶激酶四级结构的影响。提示钙调蛋白具有结构作用的证据。

The quaternary structure of phosphorylase kinase as influenced by low concentrations of urea. Evidence suggesting a structural role for calmodulin.

作者信息

Paudel H K, Carlson G M

机构信息

Department of Biochemistry, University of Tennessee, College of Medicine, Memphis 38163.

出版信息

Biochem J. 1990 Jun 1;268(2):393-9. doi: 10.1042/bj2680393.

Abstract

Skeletal-muscle phosphorylase kinase is a hexadecameric oligomer composed of equivalent amounts of four different subunits, (alpha beta gamma delta)4. The delta-subunit, which is calmodulin, functions as an integral subunit of the oligomer, and the gamma-subunit is catalytic. To learn more about intersubunit contacts within the hexadecamer and about the roles of individual subunits, we induced partial dissociation of the holoenzyme with low concentrations of urea. In the absence of Ca2+ the quaternary structure of phosphorylase kinase is very sensitive to urea over a narrow concentration range. Gel-filtration chromatography in the presence of progressively increasing concentrations of urea indicates that between 1.15 M- and 1.35 M-urea the delta-subunit dissociates, allowing extensive formation of complexes larger than the native enzyme that contain equivalent amounts of alpha-, beta- and gamma-subunits. As the urea concentration is increased to 2 M and 3 M, nearly all of the enzyme aggregates to the heavy species devoid of delta-subunit. Addition of Ca2+, which is known to block dissociation of the delta-subunit [Shenolikar, Cohen, Cohen, Nairn & Perry (1979) Eur. J. Biochem. 100, 329-337], also blocks aggregation of the enzyme induced by the low concentrations of urea. These results suggest that in native phosphorylase kinase the delta-subunit, in addition to activating the catalytic subunit and conferring upon it Ca2(+)-sensitivity, may also serve a structural role in preventing aggregation of the alpha-, beta- and gamma-subunits, thus limiting to four the number of alpha beta gamma delta protomers that associate under standard conditions. In gel-filtration chromatography with urea a protein peak containing equivalent amounts of alpha- and gamma-subunits is also observed, as is a peak containing only beta-subunits. Increasing concentrations of urea have a biphasic effect on the activity of the holoenzyme, being stimulatory up to 1 M and then inhibitory. The concentration-dependence of urea in the inhibitory phase parallels its ability to induce dissociation of the delta-subunit.

摘要

骨骼肌磷酸化酶激酶是一种十六聚体寡聚体,由等量的四种不同亚基(αβγδ)4组成。δ亚基即钙调蛋白,作为寡聚体的一个组成亚基发挥作用,γ亚基具有催化活性。为了更深入了解十六聚体内亚基间的相互作用以及各个亚基的作用,我们用低浓度尿素诱导全酶部分解离。在没有Ca2+的情况下,磷酸化酶激酶的四级结构在狭窄的尿素浓度范围内对尿素非常敏感。在逐渐增加尿素浓度的情况下进行凝胶过滤层析表明,在1.15M至1.35M尿素之间,δ亚基解离,使得包含等量α、β和γ亚基的比天然酶更大的复合物大量形成。随着尿素浓度增加到2M和3M,几乎所有的酶都聚集成不含δ亚基的重物种。已知添加Ca2+可阻止δ亚基解离[Shenolikar、Cohen、Cohen、Nairn和Perry(1979年),《欧洲生物化学杂志》100,329 - 337],同时也可阻止低浓度尿素诱导的酶聚集。这些结果表明,在天然磷酸化酶激酶中,δ亚基除了激活催化亚基并赋予其Ca2+敏感性外,还可能在防止α、β和γ亚基聚集方面发挥结构作用,从而将在标准条件下结合的αβγδ原体数量限制为四个。在含尿素的凝胶过滤层析中,还观察到一个含有等量α和γ亚基的蛋白峰,以及一个仅含β亚基的峰。尿素浓度增加对全酶活性有双相作用,在1M之前有刺激作用,之后则有抑制作用。抑制阶段尿素的浓度依赖性与其诱导δ亚基解离的能力平行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/50b9/1131445/f440256604b4/biochemj00182-0149-a.jpg

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