Sulfonyl fluorides have widespread applications in many important fields, including ligation chemistry, chemical biology, and drug discovery. Therefore, new methods to increase the synthetic efficiency and expand the available structures of sulfonyl fluorides are highly in demand. Here, we introduce a new and powerful class of sulfonyl fluoride hubs, β-chloro alkenylsulfonyl fluorides (BCASF), which can be constructed via radical chloro-fluorosulfonyl difunctionalization of alkynes under photoredox conditions. BCASF molecules exhibit versatile reactivities and well undergo a series of transformations at the chloride site while keeping the sulfonyl fluoride group intact, including reduction, Suzuki coupling, Sonogashira coupling, as well as nucleophilic substitution with various nitrogen, oxygen, and sulfur nucleophiles. By using BCASF as a synthetic hub, a wide range of sulfonyl fluorides becomes readily accessible, such as cis alkenylsulfonyl fluorides, dienylsulfonyl fluorides, and ynenylsulfonyl fluorides, which are challenging or even not possible to synthesize before with the known methods. Moreover, further application of BCASF to the late-stage modification of peptides and drugs is also demonstrated.
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http://dx.doi.org/10.1002/anie.202109072 | DOI Listing |
Angew Chem Int Ed Engl
January 2025
Nanjing University, State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, CHINA.
Targeted degradation of membrane proteins represents an attractive strategy for eliminating pathogenesis-related proteins. Aptamer-based chimeras hold great promise as membrane protein degraders, however, their degradation efficacy is often hindered by the limited structural stability and the risk of off-target effects due to the non-covalent interaction with target proteins. We here report the first design of a covalent aptamer-based autophagosome-tethering chimera (CApTEC) for the enhanced autophagic degradation of cell-surface proteins, including transferrin receptor 1 (TfR1) and nucleolin (NCL).
View Article and Find Full Text PDFArch Biochem Biophys
January 2025
Department of Biosciences Grand Asian University of Sialkot, Pakistan.
Acyl thiourea scaffolds are frequently employed in drug development to discern unique and essential therapies for the eradication of the most challenging diseases. Hence, we developed a library of novel cyclopropyl incorporating acyl thiourea derivatives (4a-j) and evaluated their antimicrobial, α-amylase, and proteinase K inhibition potential. Compound (4h) (4-methoxy) demonstrated the strongest α-amylase inhibition (IC = 1.
View Article and Find Full Text PDFOrg Lett
December 2024
Medicinal Chemistry, Monash Institute of Pharmaceutical Sciences, Monash University, Parkville, VIC 3052, Australia.
We present a Diversity Oriented Clicking approach to synthesize a library of novel clickable -substituted 2-aminothiazoles which serve as versatile hubs for SuFEx click chemistry diversification. Leveraging the spring-loaded reactivity of the 2-Substituted-Alkynyl-1-Sulfonyl Fluoride (SASF) connectors, the transformation is simple to perform, tolerant of a wide range of functionality, and regioselective for a single product. Finally, we propose a detailed stepwise reaction mechanism that is supported by experimental and computational analysis.
View Article and Find Full Text PDFEur J Med Chem
February 2025
R. C. Patel Institute of Pharmaceutical Education and Research, Shirpur, Dhule, 425405, Maharashtra, India. Electronic address:
Overcoming resistance to third-generation tyrosine kinase inhibitors (TKIs) such as Osimertinib, particularly due to the emergence of the C797S mutation, remains a key challenge in non-small cell lung cancer (NSCLC) therapy. This review highlights recent advancements in the development of fourth-generation EGFR inhibitors that specifically target the catalytic Lys745 residue, aiming to overcome resistance associated with Osimertinib. Both covalent and non-covalent inhibitors targeting Lys745 were explored, using warheads like sulfonyl fluoride, phosphine oxides, esters, and trisubstituted imidazoles.
View Article and Find Full Text PDFVet Parasitol
December 2024
College of Veterinary Medicine, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia, China; Key Laboratory of Clinical Diagnosis and Treatment of Animal Diseases, Ministry of Agriculture, National Animal Medicine Experimental Teaching Center, China. Electronic address:
To address the economic burden caused by livestock parasitic diseases, particularly gastrointestinal nematodes (GIN) and liver flukes, which are exacerbated by growing anthelmintic resistance, researchers are increasingly focusing on biological control strategies as a promising solution. Among these, the fungus Pochonia chlamydosporia has demonstrated promising helminth control properties. This study explored the potential of P.
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