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六组分bI3 I类内含子核糖核蛋白催化剂组装的动力学和热力学框架。

Kinetic and thermodynamic framework for assembly of the six-component bI3 group I intron ribonucleoprotein catalyst.

作者信息

Bassi Gurminder S, Weeks Kevin M

机构信息

Department of Chemistry, University of North Carolina, Chapel Hill, North Carolina 27599-3290, USA.

出版信息

Biochemistry. 2003 Aug 26;42(33):9980-8. doi: 10.1021/bi0346906.

Abstract

The yeast mitochondrial bI3 group I intron RNA splices in vitro as a six-component ribonucleoprotein complex with the bI3 maturase and Mrs1 proteins. We report a comprehensive framework for assembly of the catalytically active bI3 ribonucleoprotein. (1) In the absence of Mg(2+), two Mrs1 dimers bind independently to the bI3 RNA. The ratio of dissociation to association rate constants, k(off)/k(on), is approximately equal to the observed equilibrium K(1/2) of 0.12 nM. (2) At magnesium ion concentrations optimal for splicing (20 mM), two Mrs1 dimers bind with strong cooperativity to the bI3 RNA. k(off)/k(on) is 15-fold lower than the observed K(1/2) of 11 nM, which reflects formation of an obligate intermediate involving one Mrs1 dimer and the RNA in cooperative assembly of the Mrs1-RNA complex. (3) The bI3 maturase monomer binds to the bI3 RNA at almost the diffusion-controlled limit and dissociates with a half-life of 1 h. k(off)/k(on) is approximately equal to the equilibrium K(D) of 2.8 pM. The bI3 maturase thus represents a rare example of a group I intron protein cofactor whose binding is adequately characterized by a one-step mechanism under conditions that promote splicing. (4) Maturase and Mrs1 proteins each bind the bI3 RNA tightly, but with only modest coupling (approximately 1 kcal/mol), suggesting that the proteins interact at independent RNA binding sites. Maturase binding functions to slow dissociation of Mrs1; whereas prior Mrs1 binding increases the bI3 maturase k(on) right to the diffusion limit. (5) At effective concentrations plausibly present in yeast mitochondria, a predominant assembly pathway emerges involving rapid, tight binding by the bI3 maturase, followed by slower, cooperative assembly of two Mrs1 dimers. In the absence of other factors, disassembly of all protein subunits will occur in a single apparent step, governed by dissociation of the bI3 maturase.

摘要

酵母线粒体bI3 I组内含子RNA在体外作为一种与bI3成熟酶和Mrs1蛋白形成的六组分核糖核蛋白复合体进行剪接。我们报道了一个用于组装具有催化活性的bI3核糖核蛋白的综合框架。(1)在没有Mg(2+)的情况下,两个Mrs1二聚体独立地与bI3 RNA结合。解离速率常数与缔合速率常数的比值k(off)/k(on)大约等于观察到的平衡K(1/2),即0.12 nM。(2)在剪接的最佳镁离子浓度(20 mM)下,两个Mrs1二聚体以强协同性与bI3 RNA结合。k(off)/k(on)比观察到的K(1/2)(11 nM)低15倍,这反映了在Mrs1 - RNA复合体的协同组装中形成了一种涉及一个Mrs1二聚体和RNA的必需中间体。(3)bI3成熟酶单体以几乎接近扩散控制极限的速度与bI3 RNA结合,并以1小时的半衰期解离。k(off)/k(on)大约等于平衡K(D),即2.8 pM。因此,bI3成熟酶代表了I组内含子蛋白辅因子的一个罕见例子,其结合在促进剪接的条件下通过一步机制得到了充分表征。(4)成熟酶和Mrs1蛋白各自紧密结合bI3 RNA,但耦合作用较弱(约1千卡/摩尔),这表明蛋白质在独立的RNA结合位点相互作用。成熟酶的结合作用是减缓Mrs1的解离;而先前的Mrs1结合将bI3成熟酶的k(on)提高到扩散极限。(5)在酵母线粒体中可能存在的有效浓度下,出现了一种主要的组装途径,即bI3成熟酶迅速、紧密结合,随后两个Mrs1二聚体进行较慢的协同组装。在没有其他因素的情况下,所有蛋白质亚基的解离将在一个明显的步骤中发生,这由bI3成熟酶的解离决定。

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