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GATA1 在原发性骨髓纤维化的前纤维化和纤维化阶段以及其他骨髓增殖性肿瘤的骨髓纤维化进展中下调。

GATA1 downregulation in prefibrotic and fibrotic stages of primary myelofibrosis and in the myelofibrotic progression of other myeloproliferative neoplasms.

机构信息

Department of Cellular Pathology, the Royal London Hospital, London, UK; Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, NY, USA.

Department of Pathology and Laboratory Medicine, Weill Cornell Medicine, NY, USA.

出版信息

Leuk Res. 2021 Jan;100:106495. doi: 10.1016/j.leukres.2020.106495. Epub 2020 Dec 15.

Abstract

GATA binding protein 1 (GATA1) is a transcription factor essential for effective erythropoiesis and megakaryopoiesis. Two isoforms of GATA1 exist, derived from alternative splicing. "GATA1" is the full length and functionally active protein; "GATA1s" is the truncated isoform devoid of the activation domain, the function of which has not been fully elucidated. Reduced megakaryocytic expression of GATA1 has been linked to impaired hematopoiesis and bone marrow fibrosis in murine models and in vivo in patients affected by primary myelofibrosis (PMF). However, data is limited regarding GATA1 expression in other myeloproliferative neoplasms (MPN) such as pre-fibrotic PMF (pre-PMF), polycythemia vera (PV) and essential thrombocythemia (ET) and in their respective fibrotic progression. To assess whether an immunohistologic approach can be of help in separating different MPN, we have performed a comprehensive immunohistochemical evaluation of GATA1 expression in megakaryocytes within a cohort of BCR-ABL1 negative MPN. In order to highlight any potential differences between the two isoforms we tested two clones, one staining the sum of GATA1 and GATA1s ("clone 1"), the other staining GATA1 full length alone ("clone 2"). At the chronic phase, a significant reduction preferentially of GATA1 full length was seen in pre-fibrotic PMF, particularly compared to ET and PV; no significant differences were observed between PV and ET. The fibrotic progression of both PV and ET was associated with a significant reduction in GATA1, particularly affecting the GATA1 full length isoform. The fibrotic progression of pre-PMF to PMF was associated with a significant reduction of the overall GATA1 protein and a trend in reduction of GATA1s. Our findings support a role of GATA1 in the pathogenesis of BCR-ABL1 negative MPN, particularly in their fibrotic progression and suggest that the immunohistochemical evaluation of GATA1 may be of use in the differential diagnosis of these neoplasms.

摘要

GATA 结合蛋白 1(GATA1)是一种转录因子,对于有效的红细胞生成和巨核细胞生成至关重要。存在两种 GATA1 异构体,它们来自于选择性剪接。"GATA1"是全长且具有功能活性的蛋白;"GATA1s"是缺少激活域的截短异构体,其功能尚未完全阐明。在小鼠模型和原发性骨髓纤维化(PMF)患者体内,GATA1 的巨核细胞表达减少与造血功能受损和骨髓纤维化有关。然而,关于其他骨髓增殖性肿瘤(MPN)如纤维化前 PMF(pre-PMF)、真性红细胞增多症(PV)和原发性血小板增多症(ET)以及它们各自纤维化进展中的 GATA1 表达的数据有限。为了评估免疫组织化学方法是否有助于区分不同的 MPN,我们对一组 BCR-ABL1 阴性 MPN 中的巨核细胞中的 GATA1 表达进行了全面的免疫组织化学评估。为了突出两种异构体之间的任何潜在差异,我们测试了两种克隆,一种标记 GATA1 和 GATA1s 的总和("克隆 1"),另一种标记 GATA1 全长("克隆 2")。在慢性期,纤维化前 PMF 中 GATA1 全长的显著减少更为明显,尤其是与 ET 和 PV 相比;PV 和 ET 之间没有观察到显著差异。PV 和 ET 的纤维化进展均与 GATA1 的显著减少相关,特别是影响 GATA1 全长异构体。纤维化前 PMF 向 PMF 的进展与总体 GATA1 蛋白的显著减少以及 GATA1s 减少的趋势相关。我们的发现支持 GATA1 在 BCR-ABL1 阴性 MPN 发病机制中的作用,特别是在其纤维化进展中,并表明 GATA1 的免疫组织化学评估可能有助于这些肿瘤的鉴别诊断。

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