EMBO类维生素a 2011:维甲酸和维甲酸受体信号传导的机制、生物学和病理学。

Nuclear receptor signaling Pub Date : 2012-01-01 Epub Date: 2012-02-27 DOI:10.1621/nrs.10003
Neil J McKenna
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引用次数: 28

摘要

视黄酸(RA)是维生素A(视黄醇)的主要活性代谢物之一,它介导了一系列关键的生理和发育过程。RA的转录调控主要由转录因子核受体(NR)超家族维甲酸受体(RAR)亚家族成员介导。NRs结合特定的基因组DNA序列基序,并参与共同调节因子和基础转录机制的组成部分,以影响靶基因启动子的转录调节。维甲酸对信号传导的破坏被认为是包括乳腺癌和血液恶性肿瘤在内的许多炎症和肿瘤疾病的病因基础。2011年9月,在欧洲分子生物学组织(EMBO)的主持下,在斯特拉斯堡召开了类维生素A信号国际研究人员会议。类维生素a 2011涵盖了这些激素及其同源受体的无数机制,生物学和病理学方面,并将这些进展置于NR超家族成员信号传导的更广泛当前问题的背景下。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

EMBO Retinoids 2011: Mechanisms, biology and pathology of signaling by retinoic acid and retinoic acid receptors.

EMBO Retinoids 2011: Mechanisms, biology and pathology of signaling by retinoic acid and retinoic acid receptors.

EMBO Retinoids 2011: Mechanisms, biology and pathology of signaling by retinoic acid and retinoic acid receptors.

EMBO Retinoids 2011: Mechanisms, biology and pathology of signaling by retinoic acid and retinoic acid receptors.

Retinoic acid (RA) is one of the principal active metabolites of vitamin A (retinol) which mediates a spectrum of critical physiological and developmental processes. Transcriptional regulation by RA is mediated primarily by members of the retinoic acid receptor (RAR) subfamily of the nuclear receptor (NR) superfamily of transcription factors. NRs bind specific genomic DNA sequence motifs and engage coregulators and components of the basal transcription machinery to effect transcriptional regulation at target gene promoters. Disruption of signaling by retinoic acid is thought to underlie the etiology of a number of inflammatory and neoplastic diseases including breast cancer and haematological malignancies. A meeting of international researchers in retinoid signaling was convened in Strasbourg in September 2011 under the auspices of the European Molecular Biology Organization (EMBO). Retinoids 2011 encompassed myriad mechanistic, biological and pathological aspects of these hormones and their cognate receptors, as well as setting these advances in the context of wider current questions on signaling by members of the NR superfamily.

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