KnowraTetracyclineLinked fromLinked fromThe 14 pages that link to Tetracycline, each with the reason it gives.All 14Broader topic 3Related 6Compared with 5MacrolideCompared with: Tetracyclines target the small subunit rather than macrolides’ 50S site.AminoglycosideCompared with: Tetracyclines inhibit protein synthesis without the characteristic aminoglycoside-induced mistranslation.30S ribosomal subunitRelated: It inhibits translation by obstructing a key site on the small subunit.StreptomycinCompared with: It shares a ribosomal target but inhibits protein synthesis differently.Bacterial ribosomeRelated: It blocks a step in decoding by preventing incoming tRNA from reaching the A site.ChloramphenicolCompared with: They act on the small subunit rather than chloramphenicol's 50S target.MycoplasmaRelated: They can treat some Mycoplasma infections, including infections caused by resistant respiratory strains.Protein synthesis inhibitorBroader topic: Its binding to the 30S subunit prevents a key substrate from reaching the decoding site.FluoroquinoloneCompared with: Its ribosomal target contrasts with fluoroquinolone interference in chromosome replication.Bacteriostatic agentBroader topic: Tetracyclines are a prominent example of antibiotics that usually act bacteriostatically.Bacterial protein synthesisRelated: It disrupts delivery of a substrate required for translation elongation.Tetracycline antibioticsBroader topic: Its development produced a broad-spectrum drug with improved stability over early natural members.TigecyclineRelated: Tigecycline was designed to retain tetracycline activity against common resistance mechanisms.OxytetracyclineRelated: Oxytetracycline is a closely related early member of the tetracycline family.