Suppr超能文献

nNOS 的诱导和 NOSIP 的相互作用通过调节一氧化氮的产生影响粒细胞生成和中性粒细胞分化。

nNOS induction and NOSIP interaction impact granulopoiesis and neutrophil differentiation by modulating nitric oxide generation.

机构信息

Pharmacology Division, CSIR-Central Drug Research Institute, Lucknow, India.

Orthopedic Surgery, King George's Medical University, Lucknow, India.

出版信息

Biochim Biophys Acta Mol Cell Res. 2021 Jun;1868(7):119018. doi: 10.1016/j.bbamcr.2021.119018. Epub 2021 Mar 24.

Abstract

Nitric oxide (NO), a versatile free radical and a signalling molecule, plays an important role in the haematopoiesis, inflammation and infection. Impaired proliferation and differentiation of myeloid cells lead to malignancies and Hematopoietic deficiencies. This study was aimed to define the role of nNOS derived NO in neutrophil differentiation (in-vitro) and granulopoiesis (in-vivo) using multipronged approaches. The results obtained from nNOS over-expressing K562 cells revealed induction in C/EBPα derived neutrophil differentiation as evident by an increase in the expression of neutrophil specific cell surface markers, genes, transcription factors and functionality. nNOS mediated response also involved G-CSFR-STAT-3 axis during differentiation. Consistent increase in NO generation was observed during neutrophil differentiation of mice and human CD34 HSPCs. Furthermore, granulopoiesis was abrogated in the nNOS inhibitor treated mice, depicting a decrease in the numbers of BM mature and progenitor neutrophils. Likewise, in vitro inhibition of nNOS in human CD34 HSPCs indicated an indispensable role of nNOS in neutrophil differentiation. Expression of nNOS inhibitory protein, NOSIP was significantly and consistently decreased during the final stage of differentiation and was linked with the augmentation in NO release. Moreover, neutrophils from CML patients had more NOSIP and less NO generation as compared to the PMNs from healthy individuals. The present study thus indicates a critical role of nNOS, and its interaction with NOSIP during neutrophil differentiation. The study also highlights the importance of nNOS in the neutrophil progenitor proliferation and differentiation warranting investigations to assess its role in the haematopoiesis-related disorders.

摘要

一氧化氮(NO)是一种多功能自由基和信号分子,在造血、炎症和感染中发挥重要作用。髓样细胞增殖和分化受损可导致恶性肿瘤和造血功能缺陷。本研究旨在通过多种方法来定义 nNOS 衍生的 NO 在中性粒细胞分化(体外)和粒细胞生成(体内)中的作用。通过过表达 nNOS 的 K562 细胞获得的结果表明,C/EBPα 衍生的中性粒细胞分化诱导,其特征在于中性粒细胞特异性细胞表面标志物、基因、转录因子和功能的表达增加。nNOS 介导的反应在分化过程中还涉及 G-CSFR-STAT-3 轴。在小鼠和人 CD34 HSPCs 的中性粒细胞分化过程中观察到 NO 生成持续增加。此外,在 nNOS 抑制剂处理的小鼠中,粒状细胞生成被阻断,骨髓成熟和祖细胞中性粒细胞数量减少。同样,在人 CD34 HSPCs 中抑制 nNOS 体外表明 nNOS 在中性粒细胞分化中不可或缺的作用。nNOS 抑制蛋白 NOSIP 的表达在分化的最后阶段显著且持续下降,与 NO 释放的增加有关。此外,与健康个体的 PMNs 相比,CML 患者的中性粒细胞具有更多的 NOSIP 和更少的 NO 生成。因此,本研究表明 nNOS 及其与 NOSIP 在中性粒细胞分化过程中的相互作用起着关键作用。该研究还强调了 nNOS 在中性粒细胞祖细胞增殖和分化中的重要性,这需要进一步研究来评估其在造血相关疾病中的作用。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验