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SOX6 可抑制 BCR-ABL1 和 JAK2V617F 白血病细胞的增殖。

SOX6 blocks the proliferation of BCR-ABL1 and JAK2V617F leukemic cells.

机构信息

Dipartimento di Biotecnologie e Bioscienze, Università degli Studi di Milano-Bicocca, Piazza della Scienza 2, 20126, Milano, Milano, Italy.

出版信息

Sci Rep. 2019 Mar 4;9(1):3388. doi: 10.1038/s41598-019-39926-4.

Abstract

SOX6 is a HMG-box transcription factor expressed in a wide range of tissues. Recent data show that SOX6 expression is altered in different cancers, in the majority of cases being downregulated. To date, no data are available about SOX6 role in hematological malignancies. Here we demonstrate that SOX6 overexpressing BCR-ABL1 B-ALL cells are unable to promote leukemia in a mouse model. Starting from this observation, we extended our study to a panel of human leukemic cells carrying genetic lesions distinctive of different types of leukemias and myeloproliferative disorders (the BCR-ABL1 translocation and the JAK2V617F amino acid substitution) to dissect the cellular events induced by SOX6. The inhibition of proliferation is the invariant outcome of SOX6 overexpression but it is achieved via two different cellular responses: terminal differentiation in erythroid-biased cells, irrespectively of their mutation, and apoptosis in megakaryocytic-primed and lymphoid cells. Within this context, cells carrying the highest copy number of the JAK2V617F allele better counteract the SOX6-imposed growth arrest. The interrogation of the GEPIA (Gene Expression Profiling Interactive Analysis) human dataset reveals that SOX6 is downregulated in a cohort of AML patients, uncovering a wide anti-proliferative role of SOX6 in a variety of mutant backgrounds.

摘要

SOX6 是一种 HMG 盒转录因子,广泛表达于多种组织中。最近的数据表明,SOX6 在不同的癌症中表达发生改变,大多数情况下表达下调。迄今为止,尚无关于 SOX6 在血液恶性肿瘤中作用的相关数据。在此,我们证明了过表达 SOX6 的 BCR-ABL1 B-ALL 细胞在小鼠模型中无法促进白血病的发生。基于这一观察结果,我们将研究扩展到一组携带不同类型白血病和骨髓增生性疾病遗传病变的人类白血病细胞(BCR-ABL1 易位和 JAK2V617F 氨基酸取代),以剖析 SOX6 诱导的细胞事件。增殖抑制是 SOX6 过表达的不变结果,但它通过两种不同的细胞反应来实现:无论其突变如何,红系偏向细胞的终末分化和巨核细胞前体细胞和淋巴样细胞的凋亡。在这种情况下,携带 JAK2V617F 等位基因最高拷贝数的细胞更好地抵抗 SOX6 引起的生长停滞。对 GEPIA(基因表达谱交互分析)人类数据集的分析表明,SOX6 在一组 AML 患者中下调,揭示了 SOX6 在多种突变背景下广泛的抗增殖作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7dd/6399316/6e18f158bfa6/41598_2019_39926_Fig1_HTML.jpg

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