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丝状真菌中的RNA干扰及其应用技术 被引量:6
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作者 王绍文 刘刚 +1 位作者 邢苗 田生礼 《生物技术通报》 CAS CSCD 北大核心 2011年第10期77-83,共7页
RNA干扰是真核生物中相对保守的一种基因转录后表达调控机制,它通过双链RNA介导细胞内mRNA发生特异性降解或翻译抑制,从而调控靶基因的表达。对丝状真菌中RNA压制和减数分裂沉默等现象的研究表明,与动、植物一样,丝状真菌中也存在RNA干... RNA干扰是真核生物中相对保守的一种基因转录后表达调控机制,它通过双链RNA介导细胞内mRNA发生特异性降解或翻译抑制,从而调控靶基因的表达。对丝状真菌中RNA压制和减数分裂沉默等现象的研究表明,与动、植物一样,丝状真菌中也存在RNA干扰现象。通过对RNA压制缺失突变株和减数分裂沉默缺失突变株的一系列分子生物学研究,获得了与之密切相关的一系列蛋白,而这些蛋白在结构和功能上与动、植物RNA干扰途径的蛋白高度相似,这些结果证明了丝状真菌中的RNA存在干扰现象。RNA干扰技术作为丝状真菌分子生物学研究或遗传改造的工具具有特殊的意义,因为丝状真菌具有多核和发生非同源重组频率高的特点,难以用基因敲除手段进行改造。系统地介绍丝状真菌中的RNA干扰途径以及使用RNA干扰对真菌进行遗传改造的方法。 展开更多
关键词 rna干扰 rna压制 减数分裂沉默 SIrna 丝状真菌
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Oxygen sufficiency controls TOP mRNA translation via the TSC-Rheb-mTOR pathway in a 4E-BP-independent manner 被引量:3
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作者 Rachel Miloslavski Elad Cohen +12 位作者 Adam Avraham Yifat I luz Zvi Hayouka Judith Kasir Rajini Mudhasani Stephen N. Jones Nadine Cybulski Markus A. Ruegg Ola Larsson Valentina Gandin Arjuna Rajakumar Ivan Topisirovic Oded Meyuhas 《Journal of Molecular Cell Biology》 SCIE CAS CSCD 2014年第3期255-266,共12页
Cells encountering hypoxic stress conserve resources and energy by downregulating the protein synthesis. Here we demonstrate that one mechanism in this response is the translational repression of TOP mRNAs that encode... Cells encountering hypoxic stress conserve resources and energy by downregulating the protein synthesis. Here we demonstrate that one mechanism in this response is the translational repression of TOP mRNAs that encode components of the translational apparatus. This mode of regulation involves TSC and Rheb, as knockout of TSC1 or TSC2 or overexpression of Rheb rescued TOP mRNA translation in oxygen-deprived celts. Stress-induced translational repression of these mRNAs closely correlates with the hypophosphorylated state of 4E-BP, a translational repressor. However, a series of 4E-BP loss- and gain-of-function experiments disprove a cause-and- effect relationship between the phosphorylation status of 4E-BP and the translational repression of TOP mRNAs under oxygen or growth factor deprivation. Furthermore, the repressive effect of anoxia is similar to that attained by the very efficient inhibition of mTOR activity by Torin 1, but much more pronounced than roptor or rictor knockouL Likewise, deficiency of raptor or rictor, even though it mildly downregulated basal translation efficiency of TOP mRNAs, failed to suppress the oxygen-mediated translational activation of TOP mRNAs. Finally, co-knockdown of TIA-1 and TIAR, two RNA-binding proteins previously implicated in translational repression of TOP mRNAs in amino acid-starved cells, failed to relieve TOP mRNA translation under other stress conditions. Thus, the nature of the proximal translational regulator of TOP m RNAs remains elusive. 展开更多
关键词 HYPOXIA roTOR TOP mrnas translational control 4E-BP
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