Digitalis genin activity: side-group carbonyl oxygen position is a major determinant. 1979

D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed

The Na+,k+-adenosine triphosphatase-inhibiting activity of digitalis genins and their analogs is a function of side-group carbonyl (C = O) oxygen position. For each 2.2 angstroms that this oxygen is displaced from its position in digitoxigenin, activity drops by one order of magnitude. This quantitative relation resolves previously proposed models which have attempted to describe the molecular basis of genin activity. A multidisciplinary (crystallographic, conformational energy, synthetic, biological) approach to structure-activity relations is described.

UI MeSH Term Description Entries
D008968 Molecular Conformation The characteristic three-dimensional shape of a molecule. Molecular Configuration,3D Molecular Structure,Configuration, Molecular,Molecular Structure, Three Dimensional,Three Dimensional Molecular Structure,3D Molecular Structures,Configurations, Molecular,Conformation, Molecular,Conformations, Molecular,Molecular Configurations,Molecular Conformations,Molecular Structure, 3D,Molecular Structures, 3D,Structure, 3D Molecular,Structures, 3D Molecular
D001921 Brain The part of CENTRAL NERVOUS SYSTEM that is contained within the skull (CRANIUM). Arising from the NEURAL TUBE, the embryonic brain is comprised of three major parts including PROSENCEPHALON (the forebrain); MESENCEPHALON (the midbrain); and RHOMBENCEPHALON (the hindbrain). The developed brain consists of CEREBRUM; CEREBELLUM; and other structures in the BRAIN STEM. Encephalon
D004071 Digitalis Glycosides Glycosides from plants of the genus DIGITALIS. Some of these are useful as cardiotonic and anti-arrhythmia agents. Included also are semi-synthetic derivatives of the naturally occurring glycosides. The term has sometimes been used more broadly to include all CARDIAC GLYCOSIDES, but here is restricted to those related to Digitalis. Glycosides, Digitalis
D000254 Sodium-Potassium-Exchanging ATPase An enzyme that catalyzes the active transport system of sodium and potassium ions across the cell wall. Sodium and potassium ions are closely coupled with membrane ATPase which undergoes phosphorylation and dephosphorylation, thereby providing energy for transport of these ions against concentration gradients. ATPase, Sodium, Potassium,Adenosinetriphosphatase, Sodium, Potassium,Na(+)-K(+)-Exchanging ATPase,Na(+)-K(+)-Transporting ATPase,Potassium Pump,Sodium Pump,Sodium, Potassium ATPase,Sodium, Potassium Adenosinetriphosphatase,Sodium-Potassium Pump,Adenosine Triphosphatase, Sodium, Potassium,Na(+) K(+)-Transporting ATPase,Sodium, Potassium Adenosine Triphosphatase,ATPase Sodium, Potassium,ATPase, Sodium-Potassium-Exchanging,Adenosinetriphosphatase Sodium, Potassium,Pump, Potassium,Pump, Sodium,Pump, Sodium-Potassium,Sodium Potassium Exchanging ATPase,Sodium Potassium Pump
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013329 Structure-Activity Relationship The relationship between the chemical structure of a compound and its biological or pharmacological activity. Compounds are often classed together because they have structural characteristics in common including shape, size, stereochemical arrangement, and distribution of functional groups. Relationship, Structure-Activity,Relationships, Structure-Activity,Structure Activity Relationship,Structure-Activity Relationships
D051381 Rats The common name for the genus Rattus. Rattus,Rats, Laboratory,Rats, Norway,Rattus norvegicus,Laboratory Rat,Laboratory Rats,Norway Rat,Norway Rats,Rat,Rat, Laboratory,Rat, Norway,norvegicus, Rattus

Related Publications

D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
September 1984, Journal of molecular and cellular cardiology,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
December 1982, Journal of medicinal chemistry,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
April 2012, The Journal of cell biology,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
February 1998, The American journal of physiology,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
January 2001, Computers in cardiology,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
February 1966, The American journal of physiology,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
September 2021, Journal of virology,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
July 1964, The Journal of clinical investigation,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
July 2005, Cancer research,
D S Fullerton, and K Yoshioka, and D C Rohrer, and A H From, and K Ahmed
January 2008, Journal of hypertension,
Copied contents to your clipboard!