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酪蛋白激酶2的下调及多碱性肽介导的激活作用由β亚基55 - 64区域的酸性残基介导。以钙调蛋白作为可磷酸化底物的一项研究。

Casein kinase 2 down-regulation and activation by polybasic peptides are mediated by acidic residues in the 55-64 region of the beta-subunit. A study with calmodulin as phosphorylatable substrate.

作者信息

Meggio F, Boldyreff B, Issinger O G, Pińna L A

机构信息

Dipartimento di Chimica Biologica, Università di Padova, Italy.

出版信息

Biochemistry. 1994 Apr 12;33(14):4336-42. doi: 10.1021/bi00180a030.

Abstract

The noncatalytic beta-subunit is responsible for the latency of casein kinase 2 (CK2) activity toward calmodulin. Twenty-one mutants of the beta-subunit bearing either deletions or Ala substitutions for charged residues in the 5-6, 55-70, and 171-178 sequences have been assayed for their ability to substitute for wild-type beta-subunit as a suppressor of activity toward calmodulin. The only mutations that reduced the ability of the beta-subunit to suppress calmodulin phosphorylation activity, though being compatible with normal reconstitution of CK2 holoenzyme, were those affecting Asp55, Glu57 and the whole triplet Glu59-Asp-Glu61. The activity of CK2 holoenzyme, either native or reconstituted, toward calmodulin can be elicited by a variety of polybasic effectors, including polylysine, polyarginine, salmine, and histones H4, H3, and, to a lesser extent, H2a and H2b. Histone H1 and polyamines are conversely ineffective. The latent "calmodulin kinase" activity of CK2 can also be specifically unmasked by a peptide (alpha[66-86]) reproducing a basic insert of the catalytic subunit. This effect is reversed by equimolar addition of a peptide (beta[55-71]) including the 55-64 acidic stretch of the beta-subunit. Comparable polylysine stimulation was observed with the holoenzymes reconstituted with either beta wt or the beta mutants capable of assembling with the alpha-subunit, with the notable exception of those bearing Ala substitutions for acidic residues at positions 55, 57, and 59-61. These were nearly insensitive to 42 nM polylysine, which conversely promotes a more than 10-fold increase of calmodulin phosphorylation with wild-type beta.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

非催化性β亚基负责酪蛋白激酶2(CK2)对钙调蛋白活性的潜伏性。已对β亚基的21个突变体进行了检测,这些突变体在5-6、55-70和171-178序列中存在带电残基的缺失或丙氨酸替代,以评估它们替代野生型β亚基作为钙调蛋白活性抑制剂的能力。唯一降低β亚基抑制钙调蛋白磷酸化活性能力的突变,尽管与CK2全酶的正常重组兼容,但却是那些影响Asp55、Glu57以及整个三联体Glu59-Asp-Glu61的突变。天然或重组的CK2全酶对钙调蛋白的活性可由多种多碱性效应物引发,包括聚赖氨酸、聚精氨酸、鲑精蛋白以及组蛋白H4、H3,在较小程度上还有H2a和H2b。相反,组蛋白H1和多胺无效。CK2的潜伏“钙调蛋白激酶”活性也可被一个重现催化亚基碱性插入片段的肽(α[66-86])特异性地揭示。通过等摩尔添加一个包含β亚基55-64酸性片段的肽(β[55-71]),这种效应会被逆转。在用野生型β或能够与α亚基组装的β突变体重组的全酶中观察到了类似的聚赖氨酸刺激,值得注意的是,那些在55、57和59-61位酸性残基被丙氨酸替代的突变体除外。这些突变体对42 nM聚赖氨酸几乎不敏感,相反,野生型β会使钙调蛋白磷酸化增加10倍以上。(摘要截短至250字)

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