4.7 Article

A single-cell analytical approach to quantify activated caspase-3/7 during osteoblast proliferation, differentiation, and apoptosis

期刊

ANALYTICAL AND BIOANALYTICAL CHEMISTRY
卷 413, 期 20, 页码 5085-5093

出版社

SPRINGER HEIDELBERG
DOI: 10.1007/s00216-021-03471-9

关键词

Cell death and differentiation; Apoptosis; Bioluminescence detection; Caspase-3/7; Single-cell detection and quantification

资金

  1. Grant Agency of the Czech Republic [20-00726S]
  2. Brno City Municipality

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Protein heterogeneity at the single-cell level is crucial for understanding animal development processes, with low-copy-number proteins playing key roles in proliferation, differentiation, and apoptosis. The study on bone-related cells demonstrated a gradual increase in caspase-3/7 activation from proliferation to differentiation, and then to apoptosis, supporting the role of pro-apoptotic caspases in non-apoptotic functions through fine-tuning of their activation levels.
The protein heterogeneity at the single-cell level has been recognized to be vital for an understanding of various life processes during animal development. In addition, the knowledge of accurate quantity of relevant proteins at cellular level is essential for appropriate interpretation of diagnostic and therapeutic results. Some low-copy-number proteins are known to play a crucial role during cell proliferation, differentiation, and also in apoptosis. The fate decision is often based on the concentration of these proteins in the individual cells. This is likely to apply also for caspases, cysteine proteases traditionally associated with cell death via apoptosis but recently being discovered also as important factors in cell proliferation and differentiation. The hypothesis was tested in bone-related cells, where modulation of fate from apoptosis to proliferation/differentiation and vice versa is particularly challenging, e.g., towards anti-osteoporotic treatments and anti-cancer strategies. An ultrasensitive and highly selective method based on bioluminescence photon counting was used to quantify activated caspase-3/7 in order to demonstrate protein-level heterogeneity in individual cells within one population and to associate quantitative measurements with different cell fates (proliferation, differentiation, apoptosis). The results indicate a gradual increase of caspase-3/7 activation from the proliferative status to differentiation (more than three times) and towards apoptosis (more than six times). The findings clearly support one of the putative key mechanisms of non-apoptotic functions of pro-apoptotic caspases based on fine-tuning of their activation levels.

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