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The aryl hydrocarbon receptor nuclear transporter (ARNT) is a basic helix-loop-helix (bHLH) protein that contains a Per-Arnt-Sim (PAS) domain. ARNT heterodimerizes in vivo with other bHLH PAS proteins to regulate a number of cellular activities, but a physiological role for ARNT homodimers has not yet been established. Moreover, no rigorous studies have been done to characterize the biochemical properties of the bHLH domain of ARNT that would address this issue. To begin this characterization, we chemically synthesized a 56-residue peptide encompassing the bHLH domain of ARNT (residues 90-145). In the absence of DNA, the ARNT-bHLH peptide can form homodimers in lower ionic strength, as evidenced by dynamic light scattering analysis, and can bind E-box DNA (CACGTG) with high specificity and affinity, as determined by fluorescence anisotropy. Dimers and tetramers of ARNT-bHLH are observed bound to DNA in equilibrium sedimentation and dynamic light scattering experiments. The homodimeric peptide also undergoes a coil-to-helix transition upon E-box DNA binding. Peptide oligomerization and DNA affinity are strongly influenced by ionic strength. These biochemical and biophysical studies on the ARNT-bHLH reveal its inherent ability to form homodimers at concentrations supporting a physiological function and underscore the significant biochemical differences among the bHLH superfamily.  相似文献   

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细胞为适应低氧环境,其相关基因的表达方式发生了改变,其中选择性剪接在低氧应答调控过程中起到了重要的作用。低氧诱导因子介导的低氧应答信号通路在机体适应低氧环境过程中起到了十分重要的作用,低氧诱导因子剪接体通过此通路调控红细胞生成、血管生成、糖酵解等过程。而抑制性PAS蛋白质、脯氨酸羟化酶、促血管生长因子、芳香羟受体核转运蛋白剪接体则通过其它通路进行调控。选择性剪接不仅在低氧应答中起重要作用,而且与阿尔茨海默病、动脉粥样硬化、癌症等常见人类疾病相关。  相似文献   

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