Chatterjee Ritam, Chattopadhyay Sukalpa, Law Sujata
Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, 108, C.R Avenue, Kolkata 700073, West Bengal, India.
Stem Cell Research and Application Unit, Department of Biochemistry and Medical Biotechnology, Calcutta School of Tropical Medicine, 108, C.R Avenue, Kolkata 700073, West Bengal, India.
Leuk Res. 2016 Aug;47:70-7. doi: 10.1016/j.leukres.2016.05.014. Epub 2016 May 24.
Downregulation of p53 is associated with most of the neoplasms, however it claims additional significance for hematopoietic malignancy due to its supplementary role during hematopoiesis. Apart from the classical role as tumor suppressor, p53 during steady state hematopoiesis is associated with the maintenance of quiescent cell population in bone marrow by upregulating necdin (Ndn) and Gfi-1. We felt, it is necessary to delineate its attribution towards malignant conversion of hematopoietic system during leukemogenesis from all the possible angles. The present study deals with the characterization of N-N' Ethylnitrosourea (ENU) induced mouse model of leukemia by peripheral blood hemogram, bone marrow cytology, histology, cytochemical staining (MPO) and scanning electron microscopic study. We further investigated the alteration of conventional and hematopoiesis specific p53 pathways by flowcytometric expressional analysis of ATM, Chk-2, p53, p21, Ndn, Gfi-1 and Tie-2. The disruption of classical p53 pathway was observed in leukemic hematopoietic stem/progenitor population which involved downregulation of ATM, Chk-2, p53 and p21. Moreover, the expressional decline of Ndn and Gfi-1 hinted towards the mechanism of hindrance of hematopoietic quiescency in leukemic bone marrow. Increased expression of Tie-2 due to reverse correlation with p53 was found to be responsible for pathological angiogenesis in bone marrow together with increased blast burden in bone marrow during leukemia. The study presents the mechanistic scenario of the alteration of both classical as well as hematopoiesis specific p53 pathways in HSPC compartment triggering leukemic pathophysiology.
p53的下调与大多数肿瘤相关,然而由于其在造血过程中的补充作用,它对血液系统恶性肿瘤具有额外的重要意义。除了作为肿瘤抑制因子的经典作用外,在稳态造血过程中,p53通过上调神经细胞粘附分子(Ndn)和Gfi-1与维持骨髓中静止细胞群有关。我们认为,有必要从所有可能的角度来描述其在白血病发生过程中对造血系统恶性转化的作用。本研究通过外周血细胞计数、骨髓细胞学、组织学、细胞化学染色(MPO)和扫描电子显微镜研究,对N-亚硝基-N'-乙基脲(ENU)诱导的小鼠白血病模型进行了表征。我们进一步通过对ATM、Chk-2、p53、p21、Ndn、Gfi-1和Tie-2的流式细胞术表达分析,研究了传统和造血特异性p53途径的改变。在白血病造血干/祖细胞群体中观察到经典p53途径的破坏,这涉及ATM、Chk-2、p53和p21的下调。此外,Ndn和Gfi-1的表达下降暗示了白血病骨髓中造血静止受阻的机制。发现Tie-2的表达增加与p53呈负相关,这与骨髓中的病理性血管生成以及白血病期间骨髓中原始细胞负荷增加有关。该研究展示了造血干细胞微环境中经典和造血特异性p53途径改变引发白血病病理生理学的机制情况。