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The use of a genetically encoded molecular crowding sensor in various biological phenomena

机译:基因编码的分子拥挤传感器在各种生物现象中的使用

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We evaluated usability of a previously developed genetically encoded molecular crowding sensor in various biological phenomena. Molecular crowding refers to intracellular regions that are occupied more by proteins and nucleotides than by water molecules and is thought to have a strong effect on protein function. To evaluate intracellular molecular crowding, usually the diffusion coefficient of a probe is used because it is related to mobility of the surrounding molecular crowding agents. Recently, genetically encoded molecular crowding sensors based on F?rster resonance energy transfer were reported. In the present study, to evaluate the usability of a genetically encoded molecular crowding sensor, molecular crowding was monitored during several biological events. Changes in molecular crowding during stem cell differentiation, cell division, and focal adhesion development and difference in molecular crowding in filopodia locations were examined. The results show usefulness of the genetically encoded molecular crowding sensor for understanding the biological phenomena relating to molecular crowding.
机译:我们评估了以前开发的遗传编码分子拥挤传感器在各种生物现象中的可用性。分子拥挤是指蛋白质和核苷酸比水分子占据更多的细胞内区域,被认为对蛋白质功能有很强的影响。为了评估细胞内分子拥挤,通常使用探针的扩散系数,因为它与周围分子拥挤剂的迁移率有关。近来,报道了基于弗斯特共振能量转移的遗传编码分子拥挤传感器。在本研究中,为了评估遗传编码的分子拥挤传感器的可用性,在一些生物学事件中对分子拥挤进行了监测。检查了干细胞分化,细胞分裂和粘着斑发展过程中分子拥挤的变化以及丝状伪足位置分子拥挤的差异。结果表明,遗传编码的分子拥挤传感器对于理解与分子拥挤有关的生物学现象很有用。

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