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michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

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Induction of the vector results in expression of the protein fused to the affinity tag, which can then be purified from the cell lysate

michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

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michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

10.1016/j.mce.2014.02.007 37 LiuY.-R.LiW.-G.ChenL.-F.XiaoB.-K.YangJ.-Y.YangL.et al (2014a)

michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

[DOI] [PMC free article] [PubMed] [Google Scholar] 172.Zhao H., Wang J., Li Z., Wang S., Yu G., Wang L

michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

Kaempferol induces apoptosis in human lung non-small carcinoma cells accompanied by an induction of antioxidant enzymes

michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

These neurological benefits stem from better cellular energy availability and neuroprotective effects

michael-type acceptor reactivity toward glutathione Versatile introduction of multifunctional Michael-acceptor moieties on amino-oligonucleotides for bioconjugation purposes Dipeptide-catalysed Michael reaction under physiological

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