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本文引用的文献

1
Perk-dependent translational regulation promotes tumor cell adaptation and angiogenesis in response to hypoxic stress.依赖Perk的翻译调控促进肿瘤细胞在缺氧应激下的适应和血管生成。
Mol Cell Biol. 2006 Dec;26(24):9517-32. doi: 10.1128/MCB.01145-06. Epub 2006 Oct 9.
2
Translational control of gene expression during hypoxia.缺氧过程中基因表达的翻译调控
Cancer Biol Ther. 2006 Jul;5(7):749-55. doi: 10.4161/cbt.5.7.2972. Epub 2006 Jul 1.
3
"Translating" tumor hypoxia: unfolded protein response (UPR)-dependent and UPR-independent pathways.“翻译”肿瘤缺氧:未折叠蛋白反应(UPR)依赖性和UPR非依赖性途径
Mol Cancer Res. 2006 Jul;4(7):423-36. doi: 10.1158/1541-7786.MCR-06-0150.
4
Matrix metalloproteinases and tumor metastasis.基质金属蛋白酶与肿瘤转移
Cancer Metastasis Rev. 2006 Mar;25(1):9-34. doi: 10.1007/s10555-006-7886-9.
5
Hypoxia inhibits protein synthesis through a 4E-BP1 and elongation factor 2 kinase pathway controlled by mTOR and uncoupled in breast cancer cells.缺氧通过由mTOR控制且在乳腺癌细胞中解偶联的4E-BP1和延伸因子2激酶途径抑制蛋白质合成。
Mol Cell Biol. 2006 May;26(10):3955-65. doi: 10.1128/MCB.26.10.3955-3965.2006.
6
Hypoxia-induced energy stress regulates mRNA translation and cell growth.缺氧诱导的能量应激调节mRNA翻译和细胞生长。
Mol Cell. 2006 Feb 17;21(4):521-31. doi: 10.1016/j.molcel.2006.01.010.
7
Gene expression during acute and prolonged hypoxia is regulated by distinct mechanisms of translational control.急性和长期缺氧期间的基因表达受不同的翻译控制机制调节。
EMBO J. 2006 Mar 8;25(5):1114-25. doi: 10.1038/sj.emboj.7600998. Epub 2006 Feb 9.
8
Takeover of host ribosomes by divergent IRES elements.不同的内部核糖体进入位点元件对宿主核糖体的接管。
Biochem Soc Trans. 2005 Dec;33(Pt 6):1479-82. doi: 10.1042/BST0331479.
9
ER stress-regulated translation increases tolerance to extreme hypoxia and promotes tumor growth.内质网应激调节的翻译增加对极端缺氧的耐受性并促进肿瘤生长。
EMBO J. 2005 Oct 5;24(19):3470-81. doi: 10.1038/sj.emboj.7600777. Epub 2005 Sep 8.
10
The hypoxic proteome is influenced by gene-specific changes in mRNA translation.缺氧蛋白质组受mRNA翻译中基因特异性变化的影响。
Radiother Oncol. 2005 Aug;76(2):177-86. doi: 10.1016/j.radonc.2005.06.036.

缺氧期间持续与多核糖体结合的mRNA的鉴定。

Identification of mRNAs that continue to associate with polysomes during hypoxia.

作者信息

Thomas Jeff D, Johannes Gregg J

机构信息

Department of Pathology and Laboratory Medicine, Drexel University College of Medicine, Philadelphia, PA 19341, USA.

出版信息

RNA. 2007 Jul;13(7):1116-31. doi: 10.1261/rna.534807. Epub 2007 May 8.

DOI:10.1261/rna.534807
PMID:17488873
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1894931/
Abstract

Tumors must adapt to the hypoxic environment in order to grow beyond a benign microscopic mass. In addition to transcriptional activation mediated by HIF-1alpha, hypoxia has also been reported to inhibit translation. The degree of translational inhibition is dependent on the duration as well as the severity of the hypoxic insult. Anoxia (<0.02% O(2)) seems to have a more rapid and dramatic effect on translation as compared to hypoxia. We show here that prolonged hypoxia dramatically and reversibly inhibits translation in PC-3 cells. We also found that mTOR is inactivated and eIF-2alpha is phosphorylated during hypoxic treatment but only the eIF-2alpha phosphorylation correlates with the translational repression. We further used polysome analysis and microarray technology to analyze the impact of this translational repression on gene expression. We found that 33 mRNAs were refractory to this translational repression and that there was no correlation between mRNA induction and the ability to recruit ribosomes during hypoxia. We also found that ribosomal protein encoding mRNAs are more sensitive to this translational repression as compared to the majority of mRNAs. Although other reports have analyzed the effect of translation inhibition on gene expression under anoxic conditions, we believe that this is the first report in hypoxic cells. Our results show that the translational repression that occurs during hypoxia does impact gene expression in the highly transformed prostate cancer cell line, PC-3.

摘要

肿瘤必须适应缺氧环境才能生长至超出良性微小肿块的大小。除了由HIF-1α介导的转录激活外,据报道缺氧还会抑制翻译。翻译抑制的程度取决于缺氧损伤的持续时间和严重程度。与缺氧相比,无氧(<0.02% O₂)似乎对翻译有更快速且显著的影响。我们在此表明,长时间缺氧会显著且可逆地抑制PC-3细胞中的翻译。我们还发现,在缺氧处理期间mTOR失活且eIF-2α被磷酸化,但只有eIF-2α磷酸化与翻译抑制相关。我们进一步使用多核糖体分析和微阵列技术来分析这种翻译抑制对基因表达的影响。我们发现33种mRNA对这种翻译抑制具有抗性,并且在缺氧期间mRNA诱导与招募核糖体的能力之间没有相关性。我们还发现,与大多数mRNA相比,编码核糖体蛋白的mRNA对这种翻译抑制更敏感。尽管其他报告分析了无氧条件下翻译抑制对基因表达的影响,但我们认为这是关于缺氧细胞的首份报告。我们的结果表明,缺氧期间发生的翻译抑制确实会影响高度转化的前列腺癌细胞系PC-3中的基因表达。