首页> 美国卫生研究院文献>Journal of the Boston Society of Medical Sciences >Frequent Nuclear/Cytoplasmic Localization of β-Catenin without Exon 3 Mutations in Malignant Melanoma
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Frequent Nuclear/Cytoplasmic Localization of β-Catenin without Exon 3 Mutations in Malignant Melanoma

机译:恶性黑色素瘤中无外显子3突变的β-连环蛋白的频繁核/细胞质定位。

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摘要

β-Catenin has a critical role in E-cadherin-mediated cell-cell adhesion, and it also functions as a downstream signaling molecule in the wnt pathway. Mutations in the putative glycogen synthase kinase 3β phosphorylation sites near the β-catenin amino terminus have been found in some cancers and cancer cell lines. The mutations render β-catenin resistant to regulation by a complex containing the glycogen synthase kinase 3β, adenomatous polyposis coli, and axin proteins. As a result, β-catenin accumulates in the cytosol and nucleus and activates T-cell factor/lymphoid enhancing factor transcription factors. Previously, 6 of 27 melanoma cell lines were found to have β-catenin exon 3 mutations affecting the N-terminal phosphorylation sites (Rubinfeld B, Robbins P, Elgamil M, Albert I, Porfiri E, Polakis P: Stabilization of beta-catenin by genetic defects in melanoma cell lines. Science 1997, 275:1790–1792). To assess the role of β-catenin defects in primary melanomas, we undertook immunohistochemical and DNA sequencing studies in 65 melanoma specimens. Nuclear and/or cytoplasmic localization of β-catenin, a potential indicator of wnt pathway activation, was seen focally within roughly one third of the tumors, though a clonal somatic mutation in β-catenin was found in only one case (codon 45 Ser→Pro). Our findings demonstrate that β-catenin mutations are rare in primary melanoma, in contrast to the situation in melanoma cell lines. Nonetheless, activation of β-catenin, as indicated by its nuclear and/or cytoplasmic localization, appears to be frequent in melanoma, and in some cases, it may reflect focal and transient activation of the wnt pathway within the tumor.
机译:β-连环蛋白在E-钙黏着蛋白介导的细胞间粘附中起关键作用,并且在wnt途径中也起下游信号分子的作用。在某些癌症和癌细胞系中,已发现β-catenin氨基末端附近的假定糖原合酶激酶3β磷酸化位点发生突变。突变使β-catenin对包含糖原合酶激酶3β,腺瘤性息肉病和毒素蛋白的复合物的调节具有抗性。结果,β-连环蛋白积聚在细胞质和细胞核中并激活T细胞因子/淋巴增强因子转录因子。以前,发现27种黑色素瘤细胞系中的6种具有影响N末端磷酸化位点的β-catenin外显子3突变(Rubinfeld B,Robbins P,Elgamil M,Albert I,Porfiri E,Polakis P:通过稳定β-catenin黑色素瘤细胞系中的遗传缺陷(科学1997,275:1790–1792)。为了评估β-catenin缺陷在原发性黑色素瘤中的作用,我们在65个黑色素瘤标本中进行了免疫组织化学和DNA测序研究。尽管只有一例发现了β-catenin的克隆性体细胞突变,β-catenin的核和/或细胞质定位是wnt信号通路激活的潜在指标,但在约三分之一的肿瘤中均发现了β-catenin的核和/或细胞质定位。亲)。我们的发现表明,与黑色素瘤细胞系的情况相反,β-catenin突变在原发性黑色素瘤中很少见。尽管如此,如其核和/或细胞质定位所示,β-catenin的激活在黑素瘤中似乎很常见,在某些情况下,它可能反映了肿瘤内wnt途径的局灶性和瞬时激活。

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