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首页> 外文期刊>Clinical cancer research: an official journal of the American Association for Cancer Research >Nuclear translocation of the epidermal growth factor receptor family membrane tyrosine kinase receptors.
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Nuclear translocation of the epidermal growth factor receptor family membrane tyrosine kinase receptors.

机译:表皮生长因子受体家族膜酪氨酸激酶受体的核易位。

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摘要

Integral membrane proteins contain a hydrophobic transmembrane domain and mainly locate in the plasma membrane lipid bilayer. The receptor tyrosine kinases (RTK) of the epidermal growth factor receptor (EGFR) superfamily, including ErbB-1, ErbB-2, ErbB-3, and ErbB-4, constitute an important group of such membrane proteins, which have a profound impact on cancer initiation, progression, and patient outcome. Although studies of their functions have conventionally focused on their membrane-associated forms, documented observations of the presence of these membrane receptors and their functioning partners in the nucleus have reshaped the intracellular geography and highlight the need to modify the central dogma. The ErbB proteins in the membrane can translocate to the nucleus through different mechanisms. Nuclear RTKs regulate a variety of cellular functions, such as cell proliferation, DNA damage repair, and signal transduction, both in normal tissues and in human cancer cell. In addition, they play important roles in determining cancer response to cancer therapy. Nuclear presence of these ErbB proteins is emerging as an important marker in human cancers. An integrated picture of the RTK-centered signaling transduction network extending from the membrane-cytoplasm boundary to the nuclear compartment is looming in the foreseeable horizon for clinical application.
机译:整体膜蛋白包含疏水跨膜结构域,并且主要位于质膜脂质双层中。表皮生长因子受体(EGFR)超家族的受体酪氨酸激酶(RTK)包括ErbB-1,ErbB-2,ErbB-3和ErbB-4,是这类膜蛋白的重要组成部分,它们具有深远的影响有关癌症的发生,进展和患者预后的信息。尽管对它们功能的研究通常集中在它们的膜相关形式上,但是对这些膜受体及其功能伙伴在细胞核中的存在的有据可查的观察已经改变了细胞内的地理位置,并强调了修改中央教条的必要性。膜中的ErbB蛋白可以通过不同的机制转运到细胞核。核RTK调节正常组织和人类癌细胞中的多种细胞功能,例如细胞增殖,DNA损伤修复和信号转导。另外,它们在确定癌症对癌症治疗的反应中起重要作用。这些ErbB蛋白的核存在正在成为人类癌症中的重要标志物。 RTK中心的信号转导网络从膜细胞质边界延伸到核区室的综合图景在可预见的范围内日益显现,可用于临床。

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