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首页> 外文期刊>Cell death & disease. >Nuclear galectin-1-FOXP3 interaction dampens the tumor-suppressive properties of FOXP3 in breast cancer
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Nuclear galectin-1-FOXP3 interaction dampens the tumor-suppressive properties of FOXP3 in breast cancer

机译:galectin-1-FOXP3核相互作用减弱了FOXP3在乳腺癌中的肿瘤抑制特性

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FOXP3 is an important X-linked suppressor of breast cancer. It is reported that FOXP3 is usually mutant, absent, or cytoplasmic distribution in breast cancer cells, which increases the risk of breast cancer. However, in our study the full-length FOXP3 transcript can be detected in breast cancer cells and nuclear FOXP3 is expressed in some breast cancer samples. Therefore, an important question is how the tumor-suppressive function of wild-type FOXP3 is negated in these cancers. We found that Gal-1 is a novel interacting protein of FOXP3 in breast cancer. Furthermore, our results show that the FKH domain in FOXP3 is essential for its interaction with Gal-1. Through ChIP-seq assay, we found that the expression of Gal-1 could inhibit a variety of target genes which were directly regulated by FOXP3. More importantly, these FOXP3-bound genes are involved in the development and metastasis of cancer. Furthermore, functional studies revealed that blocking the FOXP3/Gal-1 interaction restores the tumor-suppressive properties of FOXP3 in breast cancer cells. Finally, we observed that the nuclear abundance of Gal-1 was significantly higher in breast cancer tissues than that in adjacent normal tissues. In addition, we identified that the acidic extracellular microenvironment in breast cancer tissues causes Gal-1 to accumulate in the nucleus. Altogether, nuclear Gal-1 interferes with the binding of FOXP3 to DNA by interacting with the FKH domain of FOXP3, and it indicates a possible mechanism for the loss of the tumor-suppressive properties of FOXP3 in wild-type FOXP3-positive breast cancer.
机译:FOXP3是一种重要的乳腺癌X连锁抑制剂。据报道,FOXP3通常在乳腺癌细胞中是突变的,不存在的或细胞质的分布,这增加了患乳腺癌的风险。但是,在我们的研究中,可以在乳腺癌细胞中检测到全长FOXP3转录本,并且在某些乳腺癌样品中表达了核FOXP3。因此,一个重要的问题是在这些癌症中如何消除野生型FOXP3的肿瘤抑制功能。我们发现Gal-1是乳腺癌中FOXP3的新型相互作用蛋白。此外,我们的结果表明,FOXP3中的FKH域对于与Gal-1相互作用至关重要。通过ChIP-seq分析,我们发现Gal-1的表达可以抑制由FOXP3直接调控的多种靶基因。更重要的是,这些与FOXP3结合的基因参与了癌症的发展和转移。此外,功能研究表明,阻断FOXP3 / Gal-1相互作用可恢复FOXP3在乳腺癌细胞中的肿瘤抑制特性。最后,我们观察到乳腺癌组织中Gal-1的核丰度显着高于相邻正常组织。此外,我们发现乳腺癌组织中的酸性细胞外微环境会导致Gal-1积聚在细胞核中。总的来说,核Gal-1通过与FOXP3的FKH域相互作用而干扰FOXP3与DNA的结合,这表明在野生型FOXP3阳性乳腺癌中FOXP3的肿瘤抑制特性丧失的可能机制。

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