首页> 外文期刊>Pathobiology: journal of immunopathology, molecular and cellular biology >Bromodeoxyuridine induces p53-dependent and -independent cell cycle arrests in human gastric carcinoma cell lines.
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Bromodeoxyuridine induces p53-dependent and -independent cell cycle arrests in human gastric carcinoma cell lines.

机译:溴脱氧尿苷在人胃癌细胞系中诱导p53依赖性和非依赖性细胞周期停滞。

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OBJECTIVES: This study was designed to clarify the effects of bromodeoxyuridine (BrdU) on cell cycle progression and induction of apoptosis, and to demonstrate the role of P53 in these processes. METHODS: We continuously exposed four human gastric carcinoma cell lines with different P53 status (P53 wild-type AGS and MKN-45, P53-mutated MKN-28 and P53-deleted KATO-III) to BrdU in asynchronous and synchronous culture conditions, and analyzed DNA histograms of apoptotic and nonapoptotic cells determined by static DNA cytofluorometry. RESULTS: Continuous exposure to 20 microM BrdU after synchronization with hydroxyurea resulted in S phase delay and G1 arrest in MKN-45 and an increase of apoptosis in the first S/G(2) phase in AGS and MKN-45. In the second S phase, a delay of 3-6 h was observed in all the four cell lines. In asynchronous cultures, continuous exposures to 20 and 200 microM BrdU for 72 h or more caused growth suppression with G(1) and G(2) arrests, respectively, in all the cell lines. CONCLUSIONS: These data suggested that the BrdU-induced growth suppression of the cell lines examined was mainly caused by cell cycle arrest rather than cell death, and that the cell cycle arrests in the first S and G(1) phases (elicited by BrdU in the single DNA strand) and those in the second S, G(2) and G(1) phases (elicited by BrdU in the double DNA strands) were mediated by p53-dependent and -independent pathways, respectively.
机译:目的:本研究旨在阐明溴脱氧尿苷(BrdU)对细胞周期进程和凋亡诱导的影响,并证明P53在这些过程中的作用。方法:在异步和同步培养条件下,我们连续将四种具有不同P53状态的人胃癌细胞系(P53野生型AGS和MKN-45,P53突变的MKN-28和P53缺失的KATO-III)暴露于BrdU,分析了通过静态DNA细胞荧光测定法确定的凋亡和非凋亡细胞的DNA直方图。结果:与羟基脲同步后连续暴露于20 microM BrdU导致MKN-45中的S期延迟和G1停滞,以及AGS和MKN-45中第一个S / G(2)期的细胞凋亡增加。在第二个S期,在所有四个细胞系中观察到3-6小时的延迟。在异步培养中,在所有细胞系中连续暴露于20和200 microM BrdU 72小时或更长时间会导致生长受到G(1)和G(2)阻滞的抑制。结论:这些数据表明,BrdU诱导的细胞株生长抑制主要是由细胞周期停滞而不是细胞死亡引起的,并且细胞周期停滞在前S和G(1)期(由BrdU诱导)。单个DNA链)和第二个S,G(2)和G(1)阶段(由双DNA链中的BrdU引发)分别由p53依赖性和非依赖性途径介导。

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