Interaction Pathways and Structure–Chemical Transformations of
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Munc13 C2B domain is an activity-dependent Ca2+ regulator of synaptic exocytosis
Munc13 C2B domain is an activity-dependent Ca2+ regulator of synaptic exocytosis
Electrochemical acetate production from high-pressure gaseous and
Jiří Czernek's research works The Czech Academy of Sciences
Pharmaceutics, Free Full-Text
On the Molecular Mechanism of the Calcium-Induced Gelation of Pectate. Different Steps in the Binding of Calcium Ions by Pectate
Stability Effect of Quinary Interactions Reversed by Single Point Mutations
Reentrant liquid condensate phase of proteins is stabilized by hydrophobic and non-ionic interactions
Pathway Engineering of Anthracyclines: Blazing Trails in Natural Product Glycodiversification
Initial Studies Directed toward the Rational Design of Aqueous
Interaction Pathways and Structure–Chemical Transformations of Alginate Gels in Physiological Environments - ScienceDirect
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