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视黄酸X受体α(RXRα)配体依赖性激活功能2(AF-2)对小鼠发育至关重要。

The RXRalpha ligand-dependent activation function 2 (AF-2) is important for mouse development.

作者信息

Mascrez B, Mark M, Dierich A, Ghyselinck N B, Kastner P, Chambon P

机构信息

Institut de Génétique et de Biologie Moléculaire et Cellulaire, CNRS-INSERM-ULP-Collège de France, BP163, CU de Strasbourg, France.

出版信息

Development. 1998 Dec;125(23):4691-707. doi: 10.1242/dev.125.23.4691.

DOI:10.1242/dev.125.23.4691
PMID:9806918
Abstract

We have engineered a mouse mutation that specifically deletes the C-terminal 18 amino acid sequence of the RXRalpha protein. This deletion corresponds to the last helical alpha structure (H12) of the ligand-binding domain (LBD), and includes the core of the Activating Domain of the Activation Function 2 (AF-2 AD core) that is thought to be crucial in mediating ligand-dependent transactivation by RXRalpha. The homozygous mutants (RXRalpha af2(o)), which die during the late fetal period or at birth, exhibit a subset of the abnormalities previously observed in RXRalpha -/- mutants, often with incomplete penetrance. In marked contrast, RXRalpha af2(o)/RXRbeta -/- and RXRalpha af2(o)/RXRbeta -/- /RXRgamma -/- compound mutants display a large array of malformations, which nearly recapitulate the full spectrum of the defects that characterize the fetal vitamin A-deficiency (VAD) syndrome and were previously found in RAR single and compound mutants, as well as in RXRalpha/RAR(alpha, beta or gamma) compound mutants. Analysis of RXRalpha af2(o)/RAR(alpha, beta or gamma) compound mutants also revealed that they exhibit many of the defects observed in the corresponding RXR alpha/RAR compound mutants. Together, these results demonstrate the importance of the integrity of RXR AF-2 for the developmental functions mediated by RAR/RXR heterodimers, and hence suggest that RXR ligand-dependent transactivation is instrumental in retinoid signalling during development.

摘要

我们构建了一种小鼠突变体,该突变体特异性删除了RXRα蛋白的C末端18个氨基酸序列。这种缺失对应于配体结合域(LBD)的最后一个螺旋α结构(H12),并包括激活功能2(AF-2)激活域的核心,该核心被认为在介导RXRα的配体依赖性反式激活中至关重要。纯合突变体(RXRαaf2(o))在胎儿后期或出生时死亡,表现出先前在RXRα-/-突变体中观察到的一部分异常,且通常具有不完全的外显率。与之形成鲜明对比的是,RXRαaf2(o)/RXRβ-/-和RXRαaf2(o)/RXRβ-/- /RXRγ-/-复合突变体表现出大量畸形,几乎重现了胎儿维生素A缺乏(VAD)综合征所特有的全部缺陷谱,这些缺陷先前在RAR单突变体和复合突变体以及RXRα/RAR(α、β或γ)复合突变体中也有发现。对RXRαaf2(o)/RAR(α、β或γ)复合突变体的分析还表明,它们表现出在相应的RXRα/RAR复合突变体中观察到的许多缺陷。总之,这些结果证明了RXR AF-2的完整性对于RAR/RXR异二聚体介导的发育功能的重要性,因此表明RXR配体依赖性反式激活在发育过程中的视黄酸信号传导中起重要作用。

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