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RUNX1 杂合性缺失导致的血小板-巨核细胞内吞作用和白蛋白及纤维蛋白原的转运改变。

Altered platelet-megakaryocyte endocytosis and trafficking of albumin and fibrinogen in RUNX1 haplodeficiency.

机构信息

Sol Sherry Thrombosis Research Center, Lewis Katz School of Medicine at Temple University, Philadelphia, PA.

Division of Hematology, Department of Medicine, Cardeza Foundation for Hematologic Research, Sidney Kimmel Medical College, Thomas Jefferson University, Philadelphia, PA.

出版信息

Blood Adv. 2024 Apr 9;8(7):1699-1714. doi: 10.1182/bloodadvances.2023011098.

Abstract

Platelet α-granules have numerous proteins, some synthesized by megakaryocytes (MK) and others not synthesized but incorporated by endocytosis, an incompletely understood process in platelets/MK. Germ line RUNX1 haplodeficiency, referred to as familial platelet defect with predisposition to myeloid malignancies (FPDMMs), is associated with thrombocytopenia, platelet dysfunction, and granule deficiencies. In previous studies, we found that platelet albumin, fibrinogen, and immunoglobulin G (IgG) were decreased in a patient with FPDMM. We now show that platelet endocytosis of fluorescent-labeled albumin, fibrinogen, and IgG is decreased in the patient and his daughter with FPDMM. In megakaryocytic human erythroleukemia (HEL) cells, small interfering RNA RUNX1 knockdown (KD) increased uptake of these proteins over 24 hours compared with control cells, with increases in caveolin-1 and flotillin-1 (2 independent regulators of clathrin-independent endocytosis), LAMP2 (a lysosomal marker), RAB11 (a marker of recycling endosomes), and IFITM3. Caveolin-1 downregulation in RUNX1-deficient HEL cells abrogated the increased uptake of albumin, but not fibrinogen. Albumin, but not fibrinogen, partially colocalized with caveolin-1. RUNX1 KD resulted in increased colocalization of albumin with flotillin and fibrinogen with RAB11, suggesting altered trafficking of both proteins. The increased uptake of albumin and fibrinogen, as well as levels of caveolin-1, flotillin-1, LAMP2, and IFITM3, were recapitulated by short hairpin RNA RUNX1 KD in CD34+-derived MK. To our knowledge, these studies provide first evidence that platelet endocytosis of albumin and fibrinogen is impaired in some patients with RUNX1-haplodeficiency and suggest that megakaryocytes have enhanced endocytosis with defective trafficking, leading to loss of these proteins by distinct mechanisms. This study provides new insights into mechanisms governing endocytosis and α-granule deficiencies in RUNX1-haplodeficiency.

摘要

血小板α-颗粒含有许多蛋白质,其中一些由巨核细胞(MK)合成,另一些则由内吞作用合成,但未被合成而是被内吞作用摄取,这是血小板/MK 中一个不完全了解的过程。胚系 RUNX1 单倍体缺陷,称为家族性血小板缺陷伴骨髓恶性肿瘤倾向(FPDMMs),与血小板减少症、血小板功能障碍和颗粒缺陷有关。在之前的研究中,我们发现 FPDMM 患者的血小板白蛋白、纤维蛋白原和免疫球蛋白 G(IgG)减少。我们现在表明,FPDMM 患者及其女儿的血小板对内源性荧光标记白蛋白、纤维蛋白原和 IgG 的内吞作用减少。在巨核细胞人红白血病(HEL)细胞中,与对照细胞相比,小干扰 RNA RUNX1 敲低(KD)在 24 小时内增加了这些蛋白质的摄取,同时增加了 caveolin-1 和 flotillin-1(2 种独立的网格蛋白非依赖性内吞作用调节剂)、LAMP2(溶酶体标记物)、RAB11(再循环内体的标志物)和 IFITM3。RUNX1 缺陷的 HEL 细胞中的 caveolin-1 下调消除了白蛋白摄取的增加,但不消除纤维蛋白原的摄取。白蛋白,但不是纤维蛋白原,部分与 caveolin-1 共定位。RUNX1 KD 导致白蛋白与 flotillin 的共定位增加,纤维蛋白原与 RAB11 的共定位增加,表明这两种蛋白质的运输发生改变。白蛋白和纤维蛋白原的摄取增加,以及 caveolin-1、flotillin-1、LAMP2 和 IFITM3 的水平,在 CD34+衍生的 MK 中通过短发夹 RNA RUNX1 KD 得到再现。据我们所知,这些研究首次提供证据表明,在一些 RUNX1 单倍体缺陷患者中,血小板对内源性白蛋白和纤维蛋白原的内吞作用受损,并表明巨核细胞的内吞作用增强,而运输缺陷导致这些蛋白质通过不同的机制丢失。这项研究为 RUNX1 单倍体缺陷中内吞作用和 α-颗粒缺陷的机制提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d852/10997914/20a47db174a9/BLOODA_ADV-2023-011098-ga1.jpg

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