The rate of deiodination of radioiodinated proteins varies with the method of iodination. To elucidate differences in the iodinated protein labeled by various methods, we have hydrolyzed fibrinogen and several small peptides iodinated by the iodine monochloride, chloramine-T, electrolytic and enzymatic methods. Under conditions of either acidic or basic proteolysis, extensive deiodination occurred and the major product was I-. When a protease of Streptomyces griseus was used, radio-iodinated fibrinogen and other polypeptides were degraded to single iodinated amino acid residues and only a small yield of I-. The iodinated amino acids resulting from proteolysis were separated by ion-exchange chromatography. The iodine monochloride and enzymatic methods yielded largely iodotyrosine with small amounts of other iodinated amino acids. The chloramine-T product spectrum varied with the chloramine-T:protein ratio, whereas the electrolytic method yield was a complex function of the reaction conditions. The different methods of iodination lead to some differences in the site of iodination which correlate with stability of the protein-iodine bond.
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Chem Asian J
January 2025
Osaka University, Department of Applied Chemistry, Yamadaoka 2-1, 565-0871, Suita, JAPAN.
Herein, we report the radical azidoamination of styrenes via the use of a combination of sodium azide and (diphenylmethylene)amino benziodoxolone under visible-light irradiation. This approach to unsymmetrical diamination provides a simple and practical method for constructing vicinal diamine scaffolds with two distinct and easily modifiable amino functionalities.
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January 2025
Shanghai Key Lab for Urban Ecological Processes and Eco-Restoration, School of Ecological and Environmental Sciences, East China Normal University, Shanghai 200241, China; Technology Innovation Center for Land Spatial Eco-restoration in Metropolitan Area, Ministry of Natural Resources, 3663N. Zhongshan Road, Shanghai 200062, China; Shanghai Engineering Research Center of Biotransformation of Organic Solid Waste, Shanghai 200241, China; State Key Laboratory of Estuarine and Coastal Research, Shanghai 200241, China. Electronic address:
Cells
November 2024
Department of Chemistry and Biochemistry, University of Wisconsin-Milwaukee, 2000 E Kenwood Blvd, Milwaukee, WI 53211, USA..
Enhancement of neuronal plasticity by small-molecule therapeutics protects cognitive skills and also ameliorates progressive neurodegenerative pathologies like Alzheimer's disease (AD) and dementia. One such compound, a novel histone deacetylase 2 (HDAC2) inhibitor named JRM-28, was shown here to enhance dendritic strength, augment spine density, and upregulate post-synaptic neurotransmission in hippocampal neurons. The molecular basis for this effect correlates with JRM-28-induced upregulation of the transcription of cAMP response element-binding protein(CREB), induction of its transcriptional activity, and subsequent stimulation of expressions of CREB-dependent plasticity-associated genes, such as those encoding N-methyl-D-aspartate (NMDA) receptor subunit NR2A and the α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid (AMPA) receptor subunit GluR1.
View Article and Find Full Text PDFOrg Biomol Chem
January 2025
School of Pharmacy, Guizhou Provincial Engineering Technology Research Center for Chemical Drug R&D, Guizhou Medical University, 550014 Guiyang, P. R. China.
This study presents a highly efficient method for 4-aminoquinoline derivative preparation under transition metal-free conditions. The process involves an aerobic oxidative dehydrative coupling of 2,3-dihydroquinolin-4(1)-ones with various amines, including ammonia, resulting in high yields of the desired products. The method is also applicable to substituted 4-aminoquinoline derivative construction through a cyclization/dehydrative coupling cascade process starting from 2'-amino chalcones.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
November 2024
State Key Laboratory of Chemical Biology, Shanghai Institute of Organic Chemistry, University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, 200032, China.
Halogenases are spurring a growing interest in the fields of biosynthesis and biocatalysis. Although various halogenases have been identified in numerous natural product biosynthetic pathways, the mechanisms for multiple halogenations and site-selectivity remain largely unclear. In this study, we biochemically characterized FasV, a flavin-dependent halogenase (FDH) that catalyzes five successive chlorinations in the biosynthesis of the naphthacene-containing aromatic polyketide naphthacemycin.
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