利用荧光共振能量转移(FRET)和新的FRET软件的细胞对缺氧反应的纳米显微镜。

Christoph Wotzlaw, Silke Gneuss, Rebecca Konietzny, Joachim Fandrey
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引用次数: 11

摘要

背景:细胞氧感应是所有哺乳动物细胞充分应对缺氧的基础,通过增加基因的表达来确保能量稳态。转录因子缺氧诱导因子-1 (HIF-1)协调缺氧诱导基因的表达,是反应的关键调节因子。HIF-1的丰度和活性是通过翻译后羟化酶的修饰来控制的,羟化酶是细胞氧传感器,其活性依赖于氧。方法:采用荧光共振能量转移法(FRET)测定HIF-1复合物的组装情况,并研究HIF-1 α亚基与o2感应羟化酶的相互作用。开发了新的软件来提高FRET测量的质量和可靠性。结果:FRET显示HIF-1亚基在多个细胞中具有密切的亲和性。本研究中敏化FRET获得的数据与先前使用受体漂白FRET的工作完全一致。o2感应羟化酶PHD1和HIF-1alpha之间的相互作用被证实,并揭示了o2感应在细胞核中的排他定位。新的软件显著提高了FRET测量的质量和速度。结论:FRET测量不仅允许在缺氧条件下跟踪HIF-1复合物的组装,而且还可以提供关于o2传感过程及其在细胞内定位的重要信息。MCS代码:92C30、92C05、92C40。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nanoscopy of the cellular response to hypoxia by means of fluorescence resonance energy transfer (FRET) and new FRET software.

Nanoscopy of the cellular response to hypoxia by means of fluorescence resonance energy transfer (FRET) and new FRET software.

Nanoscopy of the cellular response to hypoxia by means of fluorescence resonance energy transfer (FRET) and new FRET software.

Nanoscopy of the cellular response to hypoxia by means of fluorescence resonance energy transfer (FRET) and new FRET software.

Background: Cellular oxygen sensing is fundamental to all mammalian cells to adequately respond to a shortage of oxygen by increasing the expression of genes that will ensure energy homeostasis. The transcription factor Hypoxia-Inducible-Factor-1 (HIF-1) is the key regulator of the response because it coordinates the expression of hypoxia inducible genes. The abundance and activity of HIF-1 are controlled through posttranslational modification by hydroxylases, the cellular oxygen sensors, of which the activity is oxygen dependent.

Methods: Fluorescence resonance energy transfer (FRET) was established to determine the assembly of the HIF-1 complex and to study the interaction of the alpha-subunit of HIF-1 with the O2-sensing hydroxylase. New software was developed to improve the quality and reliability of FRET measurements.

Results: FRET revealed close proximity between the HIF-1 subunits in multiple cells. Data obtained by sensitized FRET in this study were fully compatible with previous work using acceptor bleaching FRET. Interaction between the O2-sensing hydroxylase PHD1 and HIF-1alpha was demonstrated and revealed exclusive localization of O2-sensing in the nucleus. The new software FRET significantly improved the quality and speed of FRET measurements.

Conclusion: FRET measurements do not only allow following the assembly of the HIF-1 complex under hypoxic conditions but can also provide important information about the process of O2-sensing and its localisation within a cell.MCS codes: 92C30, 92C05, 92C40.

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