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从大鼠脑中克隆出一种新型TGF-β超家族I型受体丝氨酸/苏氨酸激酶

Molecular cloning of a novel type I receptor serine/threonine kinase for the TGF beta superfamily from rat brain.

作者信息

Tsuchida K, Sawchenko P E, Nishikawa S, Vale W W

机构信息

Department of Molecular Genetics, Faculty of medicine, Kyoto University, Japan.

出版信息

Mol Cell Neurosci. 1996 Jun;7(6):467-78. doi: 10.1006/mcne.1996.0034.

Abstract

Growth factors belonging to the TGF beta superfamily bind to and signal through a receptor complex comprising two transmembrane serine/threonine kinases, called type I and type II. Each receptor is responsible for the signaling of the individual TGF beta superfamily members. So far, five type II and six type I receptors have been cloned from mammalian sources. We report here the molecular cloning of a novel type I receptor serine/threonine kinase, ALK7 (activin receptor-like kinase 7), from rat brain. ALK7 shows a significant sequence similarity with TGF beta RI and ActRIB in the intracellular kinase domain and is quite distinct from other type I receptors in the extracellular domain. ALK7 mRNA is expressed in embryonic and in adult rat brain, where it was localized in superficial layers of the forebrain, the CA3 pyramidal subfield of hippocampus, the basal ganglia, the thalamus, and the cerebellar cortex. The functionality of the receptor was demonstrated by the identification of a constitutively active point mutant of ALK7 that activates the TGF beta/activin-responsive reporter without any ligand stimulation. Although the endogenous ligand for ALK7 has yet to be identified, its extensive anatomic distribution in brain, gut, spleen, and lung suggests important roles for this orphan receptor.

摘要

属于转化生长因子β超家族的生长因子与一种受体复合物结合并通过其发出信号,该受体复合物由两种跨膜丝氨酸/苏氨酸激酶组成,分别称为I型和II型。每种受体负责单个转化生长因子β超家族成员的信号传导。到目前为止,已经从哺乳动物来源克隆出了五种II型受体和六种I型受体。我们在此报告从大鼠脑中克隆出一种新型I型受体丝氨酸/苏氨酸激酶ALK7(激活素受体样激酶7)。ALK7在细胞内激酶结构域与转化生长因子β RI和激活素受体I B显示出显著的序列相似性,并且在细胞外结构域与其他I型受体有很大不同。ALK7信使核糖核酸在胚胎期和成年大鼠脑中均有表达,其定位在前脑的表层、海马体的CA3锥体亚区、基底神经节、丘脑和小脑皮质。通过鉴定一种组成型激活的ALK7点突变体证实了该受体的功能,该突变体在没有任何配体刺激的情况下激活转化生长因子β/激活素反应性报告基因。尽管ALK7的内源性配体尚未确定,但其在脑、肠、脾和肺中的广泛解剖分布表明该孤儿受体具有重要作用。

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