一磷酸腺苷
腺苷
环磷酸腺苷
第二信使系统
信号转导
三磷酸腺苷
细胞内
细胞信号
二磷酸腺苷
生物化学
生物物理学
激酶
蛋白激酶A
磷酸化
化学
细胞生物学
生物
受体
血小板聚集
血小板
免疫学
作者
Yuki Komoto,Takahito Ohshiro,Masateru Taniguchi
出处
期刊:Nanomaterials
[MDPI AG]
日期:2021-03-19
卷期号:11 (3): 784-784
被引量:7
摘要
Cyclic adenosine monophosphate (cAMP) is an important research target because it activates protein kinases, and its signaling pathway regulates the passage of ions and molecules inside a cell. To detect the chemical reactions related to the cAMP intracellular signaling pathway, cAMP, adenosine triphosphate (ATP), adenosine monophosphate (AMP), and adenosine diphosphate (ADP) should be selectively detected. This study utilized single-molecule quantum measurements of these adenosine family molecules to detect their individual electrical conductance using nanogap devices. As a result, cAMP was electrically detected at the single molecular level, and its signal was successfully discriminated from those of ATP, AMP, and ADP using the developed machine learning method. The discrimination accuracies of a single cAMP signal from AMP, ADP, and ATP were found to be 0.82, 0.70, and 0.72, respectively. These values indicated a 99.9% accuracy when detecting more than ten signals. Based on an analysis of the feature values used for the machine learning analysis, it is suggested that this discrimination was due to the structural difference between the ribose of the phosphate site of cAMP and those of ATP, ADP, and AMP. This method will be of assistance in detecting and understanding the intercellular signaling pathways for small molecular second messengers.
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