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Total cellular protein presence of the transcription factor IRF8 does not necessarily correlate with its nuclear presence

机译:转录因子IRF8的总细胞蛋白存在不一定与其核存在相关

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摘要

The transcription factor interferon regulatory factor-8 (IRF8) plays an essential role in myeloid differentiation and lineage commitment, based largely on molecular and genetic studies. The detection of IRF8 in specific cell populations by flow cytometry (FCM) has the potential to provide new insights into normal and pathologic myelopoiesis, but critical validation of this protein-based approach, particularly in human samples, is lacking. In this study, the assessment of total cellular IRF8 presence was compared to its specific nuclear presence as assessed by imaging flow cytometry (IFC) analysis. Peptide neutralization of the IRF8–specific antibody that has been predominantly used to date in the literature served as a negative control for the immunofluorescent labeling. Expression of total IRF8 was analyzed by total cellular fluorescence analogous to the mean fluorescence intensity readout of conventional FCM. Additionally, specific nuclear fluorescence and the similarity score between the nuclear image (DAPI) and the corresponding IRF8 image for each cell were analyzed as a parameters for nuclear localization of IRF8. IFC showed that peptide blocking eliminated binding of the IRF8 antibody in the nucleus. It also reduced cytoplasmic binding of the antibody but not to the extent observed in the nucleus. In agreement with the similarity score data, the total cellular IRF8 as well as nuclear IRF8 intensities decreased with peptide blocking. In healthy donor peripheral blood subpopulations and a positive control cell line (THP-1), the assessment of IRF8 by total cellular presence correlated well with its specific nuclear presence and correlated with the known distribution of IRF8 in these cells. In clinical samples of myeloid-derived suppressors cells derived from patients with renal carcinoma, however, total cellular IRF8 did not necessarily correlate with its nuclear presence. Discordance was primarily associated with peptide blocking having a proportionally greater effect on the IRF8 nuclear localization versus total fluorescence assessment. The data thus indicate that IRF8 can have cytoplasmic presence and that during disease its nuclear-cytoplasmic distribution may be altered, which may provide a basis for potential myeloid defects during certain pathologies.
机译:转录因子干扰素调节因子8(IRF8)在髓样分化和谱系承诺中起着至关重要的作用,主要基于分子和遗传研究。通过流式细胞术(FCM)检测特定细胞群中的IRF8有可能为正常和病理性骨髓生成提供新的见解,但这种基于蛋白质的方法(尤其是在人类样品中)尚缺乏严格的验证。在这项研究中,将总细胞IRF8存在的评估与其通过成像流式细胞术(IFC)分析评估的特定核存在进行了比较。迄今为止,文献中主要使用的IRF8特异性抗体的肽中和作为免疫荧光标记的阴性对照。通过类似于常规FCM的平均荧光强度读数的总细胞荧光分析总IRF8的表达。此外,分析了每个细胞的特异性核荧光和核图像(DAPI)与相应IRF8图像之间的相似性得分,作为IRF8核定位的参数。 IFC显示,肽段阻断消除了IRF8抗体在细胞核中的结合。它也减少了抗体的细胞质结合,但是没有降低到细胞核中观察到的程度。与相似性评分数据一致,总的细胞IRF8强度和核IRF8强度随肽阻断而降低。在健康的供体外周血亚群和阳性对照细胞系(THP-1)中,通过总细胞存在对IRF8的评估与其特定的核存在密切相关,并且与这些细胞中IRF8的已知分布密切相关。然而,在来自肾癌患者的髓样来源抑制细胞的临床样品中,总细胞IRF8不一定与其核存在有关。与总的荧光评估相比,不一致主要与肽阻断有关,对IRF8核定位的影响更大。因此,数据表明IRF8可具有细胞质存在,并且在疾病期间其核质分布可能会改变,这可能为某些病理过程中潜在的髓样缺陷提供了基础。

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