跳到主要导航 跳到搜索 跳到主要内容

Biophysical-to-DNA Catalytic Cumulative Birecorder for Measuring Continuous Membrane Fluidity

  • Mengying Ye
  • , Xinyin Li
  • , Lu Huang
  • , Xinru Mei
  • , Huahang Yu
  • , Ke Cao
  • , Feng Chen
  • , Yongxi Zhao
  • Xi'an Jiaotong University

科研成果: 期刊稿件文章同行评审

1 引用 (Scopus)

摘要

Recording biophysical processes is crucial to understanding the cellular history and stimuli-responsive behaviors. The construction of memory machines for continuous membrane fluidity, however, remain challenging. Here, we report a biophysical-to-DNA catalytic cumulative birecorder (BioDIMER) for making individual recordings of continuous membrane fluidity events into both fluorescent signals and DNA unique molecular identifiers (UMIs) sequencing. We do this through engineered DNAzyme probe sets that accumulate bimodal signals responsive to each transient encounter on cell membrane. This in situ imaging captures spatiotemporal information, and the UMIs sequencing counts the number of transient encounters over time by digital quantification. The DNA catalytic bimodal signals enable continuous records of new events without corrupting the records of older events and achieve multidimensional interpretation of membrane fluidity timing. Using this proof-of-concept method, we recorded and deciphered differential cell membrane dynamics across diverse cell types and states, including cell cycle phases, cardiac hypertrophy, myotube differentiation, and cellular senescence. We found the first decreased and then increased change of membrane fluidity during the cell circle phases. In cardiac hypertrophy, we visualized an enhanced membrane fluidity. Oppositely, cellular senescence caused a significant reduction in membrane fluidity. They implied a highly dynamic organization of cell membrane components.

源语言英语
页(从-至)47523-47536
页数14
期刊Journal of the American Chemical Society
147
51
DOI
出版状态已出版 - 24 12月 2025

学术指纹

探究 'Biophysical-to-DNA Catalytic Cumulative Birecorder for Measuring Continuous Membrane Fluidity' 的科研主题。它们共同构成独一无二的学术指纹。

引用此