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单个LIM基序在原位靶向中的特异性以及LIM/LIM相互作用

Specificity of single LIM motifs in targeting and LIM/LIM interactions in situ.

作者信息

Arber S, Caroni P

机构信息

Friedrich Miescher Institute, Basel, Switzerland.

出版信息

Genes Dev. 1996 Feb 1;10(3):289-300. doi: 10.1101/gad.10.3.289.

Abstract

The LIM motif defines a double zinc finger structure found in proteins involved in cell fate determination and growth control. LIM proteins, which include LIM homeo domain, LIM kinase, focal adhesion, and LIM-only proteins, usually contain two or more LIM motifs clustered at their amino- or carboxy-terminal end. At present, the mode of action of the LIM domain is not clear. In this study we have analyzed the binding properties of LIM motifs in the cellular environment. We show that MLP, CRP, and betaCRP define a subclass of LIM-only proteins with unique dual subcellular localization in the nucleus and along actin-based filaments in the cytosol. A double MLP construct that accumulated nearly exclusively along actin filaments promoted myogenic differentiation efficiently, arguing for a functional role of cytoskeleton-associated MLP. Binding of MLP to the actin cytoskeleton is specifically attributable to its second LIM motif. An additional LIM motif potentiates binding. Potentiating LIM motifs can be interchanged, resulting in differential targeting of interacting proteins. To analyze LIM-LIM interactions in situ, this property was exploited to develop a hybrid interaction approach based on the relocalization of LIM-containing constructs to the actin cytoskeleton. These experiments revealed the existence of marked selectivity in the interactions of single LIM motifs, and among LIM domains from different LIM-homeo domain and LIM-only proteins. Furthermore, the analysis suggested that the LIM motif has two interacting interfaces. On the basis of these findings, we propose that LIM motifs function as specific adapter elements to promote the assembly and targeting of multiprotein complexes.

摘要

LIM 基序定义了一种双锌指结构,这种结构存在于参与细胞命运决定和生长控制的蛋白质中。LIM 蛋白包括 LIM 同源结构域、LIM 激酶、粘着斑蛋白和仅含 LIM 结构域的蛋白,通常在其氨基末端或羧基末端聚集有两个或更多个 LIM 基序。目前,LIM 结构域的作用方式尚不清楚。在本研究中,我们分析了细胞环境中 LIM 基序的结合特性。我们发现,MLP、CRP 和βCRP 定义了一类仅含 LIM 结构域的蛋白亚类,它们在细胞核和细胞质中基于肌动蛋白的细丝上具有独特的双亚细胞定位。一种几乎完全沿着肌动蛋白丝积累的双 MLP 构建体有效地促进了肌源性分化,这表明与细胞骨架相关的 MLP 具有功能作用。MLP 与肌动蛋白细胞骨架的结合特别归因于其第二个 LIM 基序。另一个 LIM 基序增强了结合。增强结合的 LIM 基序可以互换,导致相互作用蛋白的不同靶向定位。为了原位分析 LIM-LIM 相互作用,利用这一特性开发了一种基于含 LIM 构建体重新定位到肌动蛋白细胞骨架的杂交相互作用方法。这些实验揭示了单个 LIM 基序之间以及来自不同 LIM 同源结构域和仅含 LIM 结构域的蛋白的 LIM 结构域之间存在明显的选择性相互作用。此外,分析表明 LIM 基序有两个相互作用界面。基于这些发现,我们提出 LIM 基序作为特定的衔接元件,促进多蛋白复合物的组装和靶向定位。

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