Hollow RuO<sub>2</sub> nanozymes sensitized by carbon dot sonosensitizers for sonodynamic/chemodynamic-activated immunotherapy. [PDF]
Cao M +6 more
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All Nanozyme-Based Cascade Reactions for Biomedical Applications: from Self-Cascading Nanozyme to Immobilized Cascade Nanozyme. [PDF]
Zhu C, Jiang C, Lee HK, Zhang Y, Tang S.
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Multienzyme (3-in-1)-Mimicking a Single Nucleobase-Derived Bionanozyme for Versatile Environmental and Biomedical Applications. [PDF]
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Is the TCA cycle malate dehydrogenase-citrate synthase metabolon an illusion? [PDF]
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Dynamic assembly of malate dehydrogenase-citrate synthase multienzyme complex in the mitochondria
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Phase-Separated Multienzyme Condensates for Efficient Synthesis of Imines from Carboxylic Acids with Enhanced Dual-Cofactor Recycling. [PDF]
Guo T, Zeng L, Liu J, Zhang X, Bai Y.
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Structural Basis for how Sialoglycan-binding Viridans Streptococci Accommodate Ligands that Exceed the Characterized Binding Site. [PDF]
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Protein-cell conjugates as artificial surface display for interfacial biocatalysis. [PDF]
Wu X, Karring H, Wang Z, Wu C.
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Artificial multienzyme nanoflower composite hydrogel for efficiently promoting MRSA-infected diabetic wound healing via glucose-activated NO releasing and microenvironment regulation. [PDF]
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Multienzyme complexes in DNA precursor biosynthesis
Advances in Enzyme Regulation, 1979Abstract Several features of DNA replication suggest the involvement of multienzyme complexes in deoxyribonucleotide biosynthesis. Such complexes could generate intracellular concentration gradients of DNA precursors, with high levels being maintained at their sites of utilization, namely, replication forks.
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