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Small clusters of divergent amino acids surrounding the effector domain mediate the varied phenotypes of EF-G and LepA expression.
Elongation factors G, Tu, and related proteins (including LepA) form a distinct subgroup within the GTPase superfamily. This observation is based primarily upon amino acid comparisons of the effector region (G2) of the GTP-binding domain. To examine the functional importance of the highly conserved elongation factor G2 domain a series of chimeric proteins were constructed between Escherichia coli EF-G and Micrococcus luteus EF-G, and between E. coli EF-G and LepA (a protein of unknown function). The M. luteus EF-G/E. coli EF-G hybrid, M. luteus EF-G, and E. coli EF-G efficiently complemented EF-G function in an E. coli strain (PEM101) harbouring a temperature-sensitive mutation in fusA (the gene encoding EF-G). A comparison of the amino acid sequences of the M. luteus EF-G and E. coli EF-G indicated that groups of divergent amino acid residues (amino acids 1-9 and 72-80) were not important for function. LepA and LepA/EF-G chimeric proteins were tested for the ability to complement EF-G function in vivo, for cross-linking to 8-azido-[gamma-32P]-GTP in vitro and for fusidic acid-dependent co-sedimentation with 70S ribosomes. With one exception, all chimeras could be readily cross-linked to azido-GTP in an EF-G-like manner, indicating that hybrid protein construction did not generally result in improperly folded GTP-binding domains. However, the inability of such chimeras to complement EF-G function in vivo indicates that the effector domains are not functionally interchangeable. All LepA/EF-G chimeric proteins were severely defective in fusidic acid-dependent complex formation with 70S ribosomes. A comparison of the amino acid sequences of all three proteins suggests that residues 30-33, 43-48, and 63-66 of E. coli EF-G are important for EF-G specific ribosome-associated function.
[ON THE CONSERVATIVE TREATMENT OF FISTULOUS, CHRONIC SUPPURATIVE OSTEOMYELITIS].
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[A NEW ANTI-STAPHYLOCOCCAL ANTIBIOTIC: "FUCIDIN". (PRELIMINARY NOTE ON ACTIVITY IN VITRO)].
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[CLINICAL DEMONSTRATION OF A PULMONARY STAPHYLOCOCCAL INFECTION].
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FULMINATING STAPHYLOCOCCAL SEPTICAEMIA RESPONDING TO FUCIDIN.
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[TREATMENT OF NASAL STAPHYLOCCOCAL CARRIERS WITH FUCIDIN].
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[ON THE EFFECT OF FUCIDIN ON STAPHYLOCOCCI].
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TREATMENT OF A SECOND ATTACK OF BACTERIAL ENDOCARDITIS IN A YOUNG WOMAN.
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THE INFLUENCE OF FUCIDIN ON THE HEALING OF EXTRACTION WOUNDS IN DOGS.
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Glycodihydrofusidate: biliary excretion and its effect on biliary secretion of the rat.
Glycodihydrofusidate, which has the same detergent properties a bile salts, is excreted almost exclusively by the bile duct after intravenous injection in the rat. As with bile salts, it leads to a significant (P less tthan or equal to 0.05) increase in excretion of lecithins and cholesterol (0.15 mumol lecithin and 0.026 mumol cholesterol per 1 mumol of glycodihydrofusidate excreted). In addition, this drug simulataneously inhibits excretion of both endogenous bile salts and bile pigments.
The differential sensitivity of free and membrane-bound polyribosomes to inhibitors of protein synthesis.
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Topical 2% mupirocin versus 2% sodium fusidate ointment in the treatment of primary and secondary skin infections.
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Interaction of transferase II with polynucleotides and inhibition of the interaction by guanosine nucleotides.
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ATPase associated with ribosomal 30S-5SRNP particles and 40S subunits of rat liver.
The ATPase activity of rat liver 30S-5SRNP particles prepared by EDTA treatment of 80S ribosomes, and that of 40S subunits were investigated in correlation with polypeptide elongation. The ATPase activity of 30S-5SRNP particles was higher than that of 40S subunits. Poly(U) and TMV RNA stimulated the ATPase activity of 30S-5SRNP particles more markedly than that of 40S subunits. These two kinds of particles also showed intrinsic GTPase. Poly(U) enhanced the GTPase activity of 30S-5SRNP particles but not that of 40S subunits. An elongation factor (EF-1alpha, EF-2, or EF-1alphabetagamma) alone or in combination with poly(U) and/or other elongation factors stimulated the ATPase activities of both particles. The extent of stimulation of the ATPase activity by a combination of these components was usually somewhat higher than or similar to the sum of those with the individual components. The extents of stimulation by these components were higher in the case of 30S-5SRNP particles than that of 40S subunits, indicating the importance of the 5SRNP moiety in the former particles. The intactness of 18SrRNA was required for promotion of the ATPase activity of 30S-5SRNP particles by Phe(+), (-)tRNA(Phe). The ATPase activities of the two kinds of particles by themselves or those observed with the combinations of the components mentioned above were inhibited by several kinds of translation inhibitors. The degrees of inhibition were generally higher for 30S-5SRNP particles. The ATPase activity of 40S subunits was enhanced by spermidine, suggesting the importance of the conformational change induced by it. These results imply the participation of the intrinsic ATPase of 30S-5SRNP particles and 40S subunits in polypeptide elongation, and the important role of the 5SRNP moiety of 30S-5SRNP particles in the ATPase activity.
Effect of bile salts on the biliary excretion of glycodihydrofusidate in the rat.
The biliary elimination of glycodihydrofusidate (GDHF), a structural analogue of bile salts, was studied in bile fistula rats. GDHF was excreted in bile with a maximal excretory rate (Tm = 0.80 mumol min-1 kg-1) which is much lower than bile salts Tm. The effects of dehydrocholate and taurocholate on GDHF biliary secretion suggest a stimulatory effect of bile salts on canalicular excretion of the drug. (a) When a bolus intravenous injection of 3 mumol of GDHF was followed after 2 min by a continuous dehydrocholate perfusion (10 mumol min-1 kg-1), biliary excretion of GDHF was increased in comparison with control rats. (b) Upon attaining the biliary Tm by continuous perfusion of GDHF at a rate of 1.35 mumol min-1 kg-1, infusion with either taurocholate or dehydrocholate increased its Tm to a similar degree. These results are similar to those previously obtained with the effects of bile salt infusions on the Tm of bromosulfophthalein. They suggest therefore that hepatic transport of GDHF and bile salts occurs by routes which are distinct for canalicular transport in spite of the striking structural similarities between GDHF and bile salts.
PAROTITIS AND FACIAL PARALYSIS IN MID-LINE GRANULOMA.
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[Medical treatment of gallstones].
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