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Role of SR protein modular domains in alternative splicing specificity in vivo.

机译:SR蛋白模块结构域在体内选择性剪接特异性中的作用。

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摘要

The SR proteins constitute a family of nuclear phosphoproteins which are required for constitutive splicing and also influence alternative splicing regulation. They have a modular structure consisting of one or two RNA recognition motifs (RRMs) and a C-terminal domain, rich in arginine and serine residues. The functional role of the different domains of SR proteins in constitutive splicing activity has been extensively studied in vitro; however, their contribution to alternative splicing specificity in vivo has not been clearly established. We sought to address how the modular domains of SR proteins contribute to alternative splicing specificity. The activity of a series of chimeric proteins consisting of domain swaps between different SR proteins showed that splice site selection is determined by the nature of the RRMs and that RRM2 of SF2/ASF has a dominant role and can confer specificity to a heterologous protein. In contrast, the identity of the RS domain is not important, as the RS domains are functionally interchangeable. The contribution of the RRMs to alternative splicing specificity in vivo suggests that sequence-specific RNA binding by SR proteins is required for this activity.
机译:SR蛋白构成核磷蛋白家族,其是组成性剪接所必需的,并且还影响替代性剪接调节。它们具有由一个或两个RNA识别基序(RRM)和一个C端结构域组成的模块结构,富含精氨酸和丝氨酸残基。 SR蛋白的不同结构域在组成性剪接活性中的功能作用已被广泛研究。然而,它们对体内选择性剪接特异性的贡献尚未明确。我们试图解决SR蛋白的模块化域如何有助于替代剪接特异性。由不同SR蛋白之间的结构域交换组成的一系列嵌合蛋白的活性表明,剪接位点的选择由RRM的性质决定,SF2 / ASF的RRM2具有主导作用,并且可以赋予异源蛋白特异性。相反,RS域的身份并不重要,因为RS域在功能上可以互换。 RRM对体内选择性剪接特异性的贡献表明,SR蛋白与序列特异性RNA结合是该活性所必需的。

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