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gp130的致癌性缺失突变体从细胞内区室发出信号。

Oncogenic deletion mutants of gp130 signal from intracellular compartments.

作者信息

Schmidt-Arras Dirk, Müller Miryam, Stevanovic Marija, Horn Silke, Schütt Antje, Bergmann Juri, Wilkens Ruven, Lickert Annett, Rose-John Stefan

机构信息

Christian-Albrechts-University, Institute of Biochemistry, 24118 Kiel, Germany.

出版信息

J Cell Sci. 2014 Jan 15;127(Pt 2):341-53. doi: 10.1242/jcs.130294. Epub 2013 Nov 8.

Abstract

Interleukin 6 (IL-6) and, hence, activation of the IL-6 receptor signalling subunit glycoprotein 130 (gp130; also known as interleukin-6 receptor subunit β, IL6ST), has been linked to inflammation and tumour formation. Recently, deletion mutations in gp130 have been identified in inflammatory hepatocellular adenoma. The mutations clustered around one IL-6-binding epitope and rendered gp130 constitutively active in a ligand-independent manner. Here, we show that gp130 deletion mutants, but not wild-type gp130, localise predominantly to intracellular compartments, notably the endoplasmic reticulum (ER) and early endosomes. One of the most frequent mutants, gp130 Y186-Y190del (ΔYY) is retained in the ER quality control system because of its association with the chaperone calnexin. Furthermore, we can show that gp130 ΔYY induces downstream signalling from both ER and endosomes, and that both signals contribute to ligand-independent cell proliferation. We also demonstrate that the endosomal localisation of gp130 ΔYY is crucial for fully fledged STAT3 activation. Therefore, aberrant signalling from intracellular compartments might explain the tumorigenic potential of naturally occurring somatic mutations of gp130.

摘要

白细胞介素6(IL-6),进而白细胞介素6受体信号亚基糖蛋白130(gp130;也称为白细胞介素6受体亚基β,IL6ST)的激活,与炎症和肿瘤形成有关。最近,在炎性肝细胞腺瘤中发现了gp130的缺失突变。这些突变聚集在一个IL-6结合表位周围,使gp130以不依赖配体的方式持续激活。在这里,我们表明,gp130缺失突变体,而非野生型gp130,主要定位于细胞内区室,特别是内质网(ER)和早期内体。最常见的突变体之一,gp130 Y186 - Y190del(ΔYY),由于其与伴侣钙连蛋白的关联而保留在内质网质量控制系统中。此外,我们可以证明gp130 ΔYY从内质网和内体均诱导下游信号传导,并且这两种信号均有助于不依赖配体的细胞增殖。我们还证明gp130 ΔYY的内体定位对于完全成熟的STAT3激活至关重要。因此,细胞内区室的异常信号传导可能解释了gp130自然发生的体细胞突变的致瘤潜力。

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