首页> 美国卫生研究院文献>The EMBO Journal >A kinase subdomain of transforming growth factor-beta (TGF-beta) type I receptor determines the TGF-beta intracellular signaling specificity.
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A kinase subdomain of transforming growth factor-beta (TGF-beta) type I receptor determines the TGF-beta intracellular signaling specificity.

机译:I型转化生长因子(TGF-beta)受体的激酶亚结构域决定了TGF-beta细胞内信号传导的特异性。

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摘要

Transforming growth factor-beta (TGF-beta) signals through a heteromeric complex of related type I and type II serine/threonine kinase receptors. In Mv1Lu cells the type I receptor TbetaRI mediates TGF-beta-induced gene expression and growth inhibition, while the closely related type I receptors Tsk7L and TSR1 are inactive in these responses. Using chimeras between TbetaRI and Tsk7L or TSR1, we have defined the structural requirements for TGF-beta signaling by TbetaRI. The extracellular/transmembrane or cytoplasmic domains of TbetaRI and Tsk7L were functionally not equivalent. The juxtamembrane domain, including the GS motif, and most regions in the kinase domain can functionally substitute for each other, but the alphaC-beta4-beta5 region from kinase subdomains III to V conferred a distinct signaling ability. Replacement of this sequence in TbetaRI by the corresponding domain of Tsk7L inactivated TGF-beta signaling, whereas its introduction into Tsk7L conferred TGF-beta signaling. The differential signaling associated with this region was narrowed down to a sequence of eight amino acids, the L45 loop, which is exposed in the three-dimensional kinase structure and diverges highly between TbetaRI and Tsk7L or TSR1. Replacement of the L45 sequence in Tsk7L with that of TbetaRI conferred TGF-beta responsiveness to the Tsk7L cytoplasmic domain in Mv1Lu cells. Thus, the L45 sequence between kinase subdomains IV and V specifies TGF-beta responsiveness of the type I receptor.
机译:转化生长因子-β(TGF-β)信号通过相关的I型和II型丝氨酸/苏氨酸激酶受体的异源复合物。在Mv1Lu细胞中,I型受体TbetaRI介导TGF-β诱导的基因表达和生长抑制,而密切相关的I型受体Tsk7L和TSR1在这些反应中没有活性。使用TbetaRI与Tsk7L或TSR1之间的嵌合体,我们定义了TbetaRI对TGF-beta信号转导的结构要求。 TbetaRI和Tsk7L的细胞外/跨膜或胞质域在功能上不相同。包括GS基序在内的近膜结构域和激酶结构域中的大多数区域可以在功能上相互替代,但是激酶子结构域III至V的alphaC-beta4-beta5区具有独特的信号传导能力。用Tsk7L的相应结构域替换TbetaRI中的该序列可灭活TGF-β信号,而将其引入Tsk7L则可赋予TGF-β信号。与该区域相关的差异信号被缩小为八个氨基酸的序列,即L45环,该环暴露在三维激酶结构中,并在TbetaRI和Tsk7L或TSR1之间高度分化。用TbetaRI替换Tsk7L中的L45序列,赋予Mv1Lu细胞中Tsk7L胞质域TGF-beta反应性。因此,激酶亚结构域IV和V之间的L45序列指定了I型受体的TGF-β响应性。

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