Talora Claudio, Campese Antonio F, Bellavia Diana, Felli Maria Pia, Vacca Alessandra, Gulino Alberto, Screpanti Isabella
Department of Experimental Medicine, Sapienza University of Rome, Roma, Italy.
Biochim Biophys Acta. 2008 Sep;1782(9):489-97. doi: 10.1016/j.bbadis.2008.06.008. Epub 2008 Jun 24.
Notch signaling pathway regulates a wide variety of cellular processes during development and it also plays a crucial role in human diseases. This important link is firmly established in cancer, since a rare T-ALL-associated genetic lesion has been initially reported to result in deletion of Notch1 ectodomain and constitutive activation of its intracellular region. Interestingly, the cellular response to Notch signaling can be extremely variable depending on the cell type and activation context. Notch signaling triggers signals implicated in promoting carcinogenesis and autoimmune diseases, whereas it can also sustain responses that are critical to suppress carcinogenesis and to negatively regulate immune response. However, Notch signaling induces all these effects via an apparently simple signal transduction pathway, diversified into a complex network along evolution from Drosophila to mammals. Indeed, an explanation of this paradox comes from a number of evidences accumulated during the last few years, which dissected the intrinsic canonical and non-canonical components of the Notch pathway as well as several modulatory extrinsic signaling events. The identification of these signals has shed light onto the mechanisms whereby Notch and other pathways collaborate to induce a particular cellular phenotype. In this article, we review the role of Notch signaling in cells as diverse as T lymphocytes and epithelial cells of the epidermis, with the main focus on understanding the mechanisms of Notch versatility.
Notch信号通路在发育过程中调节多种细胞过程,并且在人类疾病中也起着关键作用。这种重要联系在癌症中已得到确凿证实,因为最初报道一种罕见的与T-ALL相关的基因病变会导致Notch1胞外结构域缺失及其胞内区域的组成性激活。有趣的是,细胞对Notch信号的反应会因细胞类型和激活背景而极具差异。Notch信号触发与促进致癌作用和自身免疫性疾病相关的信号,而它也能维持对抑制致癌作用和负向调节免疫反应至关重要的反应。然而,Notch信号通过一条看似简单的信号转导途径诱导所有这些效应,该途径在从果蝇到哺乳动物的进化过程中演变成一个复杂的网络。事实上,这一矛盾现象的解释来自过去几年积累的大量证据,这些证据剖析了Notch途径的内在经典和非经典成分以及一些调节性外在信号事件。这些信号的鉴定揭示了Notch与其他途径协同诱导特定细胞表型的机制。在本文中,我们综述了Notch信号在诸如T淋巴细胞和表皮上皮细胞等多种细胞中的作用,主要重点在于理解Notch多功能性的机制。