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白血病中昼夜节律基因的差异表达及Sirt1在恢复慢性髓性白血病昼夜节律中的可能作用

Differential Expression of Circadian Genes in Leukemia and a Possible Role for Sirt1 in Restoring the Circadian Clock in Chronic Myeloid Leukemia.

作者信息

Rahman Sabhi, Al-Hallaj Al-Shaimaa, Nedhi Atef, Gmati Gmal, Ahmed Khadega, Jama Haya Al, Trivilegio Thadeo, Mashour Abdullah, Askar Ahmad Al, Boudjelal Mohamed

机构信息

Drug Discovery Unit-Core Facility Medical Platforms and Technology, King Abdullah International Medical Research Centre (KAIMRC), National Guard Health Affairs, Riyadh, SA.

Ministry of National Guard Health Affairs, Riyadh, SA.

出版信息

J Circadian Rhythms. 2017 Apr 28;15:3. doi: 10.5334/jcr.147.

Abstract

Disregulation of genes making up the mammalian circadian clock has been associated with different forms of cancer. This study aimed to address how the circadian clock genes behave over the course of treatment for both the acute and chronic forms of leukemia and whether any could be used as potential biomarkers as a read-out for therapeutic efficacy. Expression profiling for both core and ancillary clock genes revealed that the majority of clock genes are down-regulated in acute myeloid leukemia patients, except for Cry2, which is up-regulated towards the end of treatment. A similar process was seen in acute lymphocytic leukemia patients; however, here, Cry2 expression came back up towards control levels upon treatment completion. In addition, all of the core clock genes were down-regulated in both chronic forms of leukemia (chronic myeloid leukemia and chronic lymphocytic leukemia), except for Cry2, which was not affected when the disease was diagnosed. Furthermore, the NAD(+) - dependent protein deacetylase Sirt1 has been proposed to have a dual role in both control of circadian clock circuitry and promotion of cell survival by inhibiting apoptotic pathways in cancer. We used a pharmacological-based approach to see whether Sirt1 played a role in regulating the circadian clock circuitry in both acute and chronic forms of leukemia. Our results suggest that interfering with Sirt1 leads to a partial restoration of BMAL1 oscillation in chronic myeloid leukemia patient samples. Furthermore, interfering with Sirt1 activity led to both the induction and repression of circadian clock genes in both acute and chronic forms of leukemia, which makes it a potential therapeutic target to either augment existing therapies for chronic leukemia or to act as a means of facilitating chronotherapy in order to maximize both the effectiveness of existing therapies and to minimize therapy-associated toxicity.

摘要

构成哺乳动物生物钟的基因失调与多种癌症相关。本研究旨在探讨生物钟基因在急性和慢性白血病治疗过程中的表现,以及是否有任何基因可作为潜在生物标志物用于评估治疗效果。对核心和辅助生物钟基因的表达谱分析显示,除了Cry2在治疗末期上调外,大多数生物钟基因在急性髓性白血病患者中表达下调。急性淋巴细胞白血病患者也出现了类似的过程;然而,在这里,治疗完成后Cry2表达恢复到对照水平。此外,在两种慢性白血病(慢性髓性白血病和慢性淋巴细胞白血病)中,所有核心生物钟基因均表达下调,除了Cry2在疾病诊断时未受影响。此外,有人提出NAD(+)依赖性蛋白脱乙酰酶Sirt1在控制生物钟电路和通过抑制癌症细胞凋亡途径促进细胞存活方面具有双重作用。我们采用基于药理学的方法来研究Sirt1是否在急性和慢性白血病中调节生物钟电路。我们的结果表明,干扰Sirt1会导致慢性髓性白血病患者样本中BMAL1振荡的部分恢复。此外,干扰Sirt1活性会导致急性和慢性白血病中生物钟基因的诱导和抑制,这使其成为增强慢性白血病现有疗法或作为促进时间疗法的手段的潜在治疗靶点,以最大限度地提高现有疗法的有效性并最小化治疗相关毒性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1795/5624060/ac3b88bc358e/jcr-15-147-g1.jpg

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