In situ study of RSK2 kinase activity in a single living cell by combining single molecule spectroscopy with activity-based probes
Literature Information
Shengrong Yu, Zhixue Du, Chaoqing Dong, Jicun Ren
Protein phosphorylation is a very important regulatory mechanism in a majority of biological processes, and the determination of protein kinase activity plays a key role in the pathological study and drug development of kinase-related diseases. However, it is very challenging to in situ study endogenous protein kinase activity in a single living cell due to the shortage of in vivo efficient methods. Here, we propose a new strategy for direct determination of protein kinase activity in a single living cell by combining single molecule fluorescence correlation spectroscopy (FCS) with activity-based probes (ABPs). Ribosomal S6 kinase-2 (RSK2) was used as a model, and the ABPs were synthesized on the basis of RSK2 inhibitor FMK to specially label active RSK2 in living cells. Conventional FCS and MEMFCS (maximum entropy method) single molecule techniques were used to in situ determine RSK2 activity in living cells based on the difference in molecular weight between free probes and probeāRSK2 complexes. Furthermore, wild-type and mutated RSK2 were fused with enhanced green fluorescent protein (EGFP) using lentivirus infection, and fluorescence cross-correlation spectroscopy (FCCS) was used to verify the selective binding of ABPs to RSK2-EGFP fusion protein in living cells. Finally, FCS with ABPs was applied for in situ monitoring of the activation of endogenous RSK2 in the stimulation of serum, epidermal growth factor, kinase inhibitors and ultraviolet irradiation; we observed that endogenous RSK2 showed different behaviors in the cytoplasm and the nucleus in some stimulation. Our results document that FCS with ABPs is a very promising method for studying endogenous protein kinases in living cells.
Related Literature
Intramolecular hydrogen tunneling in 2-chloromalonaldehyde trapped in solid para-hydrogen
Michèle Chevalier, Justinas Ceponkus, Claudine Crépin
DOI: 10.1039/C9CP06866J
Surface plasmon resonance study of the interaction of N-methyl mesoporphyrin IX with G-quadruplex DNA
M. Perenon, H. Bonnet, T. Lavergne, J. Dejeu, E. Defrancq
DOI: 10.1039/C9CP06321H
Theoretical study on thermal curing mechanism of arylethynyl-containing resins
Zuowei Chen, Liquan Wang, Jiaping Lin, Lei Du
DOI: 10.1039/C9CP06892A
Shape controlled assembly of carboxylic acids: formation of a binary monolayer by intercalation into molecular nanotunnels
Rodrigo Ortiz de la Morena, Andika Asyuda, Hao Lu, Hannah Aitchison, Kelly Turner, Stephen M. Francis, Michael Zharnikov, Manfred Buck
DOI: 10.1039/C9CP06724H
Role of ring-enlargement reactions in the formation of aromatic hydrocarbons
Martina Baroncelli, Qian Mao, Simon Galle, Nils Hansen, Heinz Pitsch
DOI: 10.1039/C9CP05854K
How flexible is the water molecule structure? Analysis of crystal structures and the potential energy surface
Milan R. Milovanović, Jelena M. Živković, Dragan B. Ninković, Ivana M. Stanković
DOI: 10.1039/C9CP07042G
Halogen⋯halogen interactions in decahalo-closo-carboranes: CSD analysis and theoretical study
Maria de las Nieves Piña, Antonio Bauzá, Antonio Frontera
DOI: 10.1039/D0CP00114G
Xe⋯chalcogen aerogen bond. Effect of substituents and size of chalcogen atom
Ruijing Wang, Haojie Liu, Qingzhong Li, Steve Scheiner
DOI: 10.1039/C9CP06648A
Water plays a dynamical role in a hydrogen-bonded, hexameric supramolecular assembly
Ankita Katiyar, Julia C. Freire Sovierzoski, Paul B. Calio, Anthony A. Vartia, Ward H. Thompson
DOI: 10.1039/C9CP06874K
You might also like
What is the market or research trend for N-(4-Methoxybenzyl)-2-pyridinamine (CAS: 52818-63-0)?
N-(4-Methoxybenzyl)-2-pyridinamine (CAS: 52818-63-0) is increasingly being used ...
What precautions should be taken when handling Ethyl 4-(2-chlorophenyl)-1,3-thiazole-2-carboxylate (CAS: 1050507-06-6)?
When handling Ethyl 4-(2-chlorophenyl)-1,3-thiazole-2-carboxylate, appropriate p...
What regulatory guidelines apply to diethyldiselane (CAS: 628-39-7)?
Diethyldiselane (CAS: 628-39-7) is classified under the Globally Harmonized Syst...
What is the market or research trend for oxocopper (CAS: 12053-18-8)?
The market for oxocopper (CAS: 12053-18-8) is primarily driven by its use in cat...
What is the market or research trend for 5-{[(2-Methyl-2-propanyl)oxy]carbonyl}-5-azaspiro[2.4]heptane-7-carboxylic acid?
The market for 5-{[(2-Methyl-2-propanyl)oxy]carbonyl}-5-azaspiro[2.4]heptane-7-c...
What is 2-(1-Pyrrolidinyl)-4-pyridinamine (CAS: 35981-63-6)?
2-(1-Pyrrolidinyl)-4-pyridinamine is a chemical compound with the CAS number 359...
What are the physical and chemical properties of 2-(3-Pyridinyl)-1-azabicyclo[2.2.2]octane (CAS: 91556-75-1)?
2-(3-Pyridinyl)-1-azabicyclo[2.2.2]octane (CAS: 91556-75-1) is a crystalline sol...
How is (S)-Alpha-allyl-proline hydrochloride (CAS: 129704-91-2) typically synthesized?
(S)-Alpha-allyl-proline hydrochloride is usually synthesized via a Wittig reacti...
What is 3-Methyl-1,2-oxazole-5-carboxylic acid (CAS: 4857-42-5)?
3-Methyl-1,2-oxazole-5-carboxylic acid (CAS: 4857-42-5) is an organic compound w...
How is Lys-SMCC-DM1 (CAS: 1281816-04-3) typically synthesized?
Lys-SMCC-DM1 is synthesized via a multi-step process involving the coupling of S...
Source Journal
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.














