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Protoplasma, 1975
Acetabularia cells contain a protein kinase activity which transfers phosphate from ATP to serine or threonine residues of proteins. The enzyme does not respond to cAMP or cGMP. The specific activity increased during development and reached a maximum just before beginning of cap formation. The kinase appears to be a chloroplast associated enzyme.
H S, Pai +6 more
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Acetabularia cells contain a protein kinase activity which transfers phosphate from ATP to serine or threonine residues of proteins. The enzyme does not respond to cAMP or cGMP. The specific activity increased during development and reached a maximum just before beginning of cap formation. The kinase appears to be a chloroplast associated enzyme.
H S, Pai +6 more
openaire +2 more sources
2021
Bacteria are able to inhabit and survive vastly diverse environments. This enormous adaptive capacity depend on their ability to perceive cues from the micro-environment and process this information accordingly to mount appropriate metabolic responses and ultimately sustain homeostasis.
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Bacteria are able to inhabit and survive vastly diverse environments. This enormous adaptive capacity depend on their ability to perceive cues from the micro-environment and process this information accordingly to mount appropriate metabolic responses and ultimately sustain homeostasis.
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Molecular and Cellular Biochemistry, 1984
Nuclear protein kinases include enzymes that transfer the gamma-phosphate of ATP to serine, threonine, lysine or histidine in proteins. Nuclear kinases with a preference for basic proteins are known as histone kinases; those preferring acidic protein substrates are casein kinases.
H R, Matthews, V D, Huebner
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Nuclear protein kinases include enzymes that transfer the gamma-phosphate of ATP to serine, threonine, lysine or histidine in proteins. Nuclear kinases with a preference for basic proteins are known as histone kinases; those preferring acidic protein substrates are casein kinases.
H R, Matthews, V D, Huebner
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DNA Repair, 2004
Checkpoint kinase 2 (Chk2) is a multifunctional enzyme whose functions are central to the induction of cell cycle arrest and apoptosis by DNA damage. Insight into Chk2 has derived from multiple approaches. Biochemical studies have addressed Chk2 structure, domain organization and regulation by phosphorylation.
Jinwoo, Ahn +2 more
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Checkpoint kinase 2 (Chk2) is a multifunctional enzyme whose functions are central to the induction of cell cycle arrest and apoptosis by DNA damage. Insight into Chk2 has derived from multiple approaches. Biochemical studies have addressed Chk2 structure, domain organization and regulation by phosphorylation.
Jinwoo, Ahn +2 more
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Networking with protein kinases
Current Biology, 1993It is taken for granted nowadays that extracellular signals are amplified and transduced inside cells by protein kinase cascades. Hundreds of different protein kinases have already been identified and the rate of discovery of new kinases shows no sign of slowing. Until recently, however, relatively little was known about how all these different protein
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The International Journal of Biochemistry & Cell Biology, 1997
Protein kinase CK2 is a ubiquitous protein kinase responsible for the phosphorylation of Ser and Thr residues specified by acidic side chains in many proteins, including several key enzymes, growth factor receptors, transcription factors and cytoskeletal proteins.
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Protein kinase CK2 is a ubiquitous protein kinase responsible for the phosphorylation of Ser and Thr residues specified by acidic side chains in many proteins, including several key enzymes, growth factor receptors, transcription factors and cytoskeletal proteins.
openaire +2 more sources
The contemporary management of cancers of the sinonasal tract in adults
Ca-A Cancer Journal for Clinicians, 2023Rajat Thawani
exaly
The protein corona from nanomedicine to environmental science
Nature Reviews Materials, 2023Assist Prof Morteza Mahmoudi +2 more
exaly

