Primary structure of the elongation factor 1 alpha in Sulfolobus solfataricus.
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Biomedical subjects
Publications and source records attributed to A Dello Russo.
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The elongation factor 2 (aEF-2) from the extreme thermo-acidophilic archaebacterium Sulfolobus solfataricus, is the only cytosolic target protein which is ADP-ribosylated by diphtheria toxin in presence of NAD. Once ADP-ribosylated, aEF-2 is no longer able to sustain poly(Phe) synthesis in vitro. aEF-2 displays a great thermoresistance: at the growth temperature of the archaebacterium, 87 degrees C, its half-life is 3 h. The amino acid sequence of the N-terminal region of aEF-2 has been determined up to residue 22. In the first 15 positions such a sequence is identical to that of EF-2 from Sulfolobus acidocaldarius and very similar to that of EF-2 from other archaebacteria or eukaryotes. The same is true for the primary structure of the peptide containing the ADP-ribosylation site. The fact that the primary structure of EF-2 at the ADP-ribosylation site is highly conserved ensures either the correct recognition of the histidine residue by the enzymes involved in its modification to diphthamide, or the proper interaction with the diphtheria toxin.
The main objective of this clinical trial was to evaluate the effects of magnesium pidolate (15 mmol/day) on blood pressure at rest and during sympathetic stimulation induced by cold, isometric and tilt test; peripheral blood flow has been evaluated by strain-gauge plethysmography. Fourteen mild to moderate hypertensives (8 males, 6 females, age range 40-60 years) were randomly given magnesium or placebo in a double-blind parallel clinical trial for 6 months. In the actively treated group magnesium urinary excretion increased from 5.3 +/- 2 to 7.7 +/- 2 mmol/24 h, and serum magnesium changed from 0.9 +/- 0.1 to 1.0 +/- 0.2 mmol/l. On magnesium, BP changed at rest from 156/97 +/- 12/4 to 149/90 +/- 8/3 mm Hg, during cold pressor test from 169/105 +/- 9/6 to 174/105 +/- 15/4, during isometric exercise from 170/107 +/- 13/9 to 170/105 +/- 20/6, and during tilt test from 149/96 +/- 11/6 to 153/96 +/- 17/7 mm Hg. Similar changes were observed in the placebo group. Peripheral resistances were 14.7 +/- 4 and 9.8 +/- 2 PRU before and after magnesium, respectively. These data indicate that long-term magnesium pidolate supplementation does not affect blood pressure at rest and during sympathetic stimulation, despite a slight, nonsignificant reduction in forearm peripheral resistance.
Hemodiafiltration (HDF) is a very effective blood treatment resulting from the coupling of dialysis and hemofiltration and leading to reduction of dialysis time. The aim of this study was to evaluate the balance of bicarbonate and calcium through the filter during postdilutional HDF (with an ultrafiltration flow rate of 70 ml/min) and to verify the effect of ultrafiltration on the kinetics of these two solutes. The study was performed by simultaneously collecting three blood samples (at filter inlet and outlet and after reinfusion) at different ultrafiltration flow rates (12.5-90 ml/min), to measure blood pH, pCO2, plasma total CO2(TCO2), total calcium, ionized calcium and plasma protein concentration. Plasma bicarbonate concentration was calculated by measuring plasma TCO2. The results showed an inverse linear relationship between bicarbonate (r: -0.7938; p less than 0.001) and calcium (r: -0.8731; p less than 0.001) balance and ultrafiltration flow rate. In particular, in postdilutional HDF both bicarbonate and calcium balances through the filter were negative at ultrafiltration flow rates greater than 40 and 55 ml/min, respectively. The negative bicarbonate balance, however, was corrected by reinfusing a substituting solution containing bicarbonate (40 mmol/l). By contrast, the negative calcium balance cannot be corrected by reinfusion and requires a greater calcium concentration in the dialysate and oral calcium supplements.
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The elongation factor 2 (aEF-2) has been purified to homogeneity from the extreme thermoacidophilic archaebacterium Sulfolobus solfataricus. It is the only target protein which is ADP-ribosylated by diphtheria toxin in presence of NAD and this modification abolishes its property to support poly(Phe) synthesis in vitro. The factor is constituted by a single polypeptide chain with a relative molecular mass of 78,000 and an isoelectric point of 5.9. aEF-2 is resistant to heat denaturation as shown by the fact that its capability to be ADP-ribosylated was only 10% reduced after 4 h treatment at 80 degrees C. Its amino acid composition does not reveal significant differences with that of analogous factors in other sources; nevertheless, the deviation function indicates that aEF-2 is related to Sulfolobus acidocaldarius and eukaryotes EF-2 more than to eubacterial EF-G or other archaebacterial EF-2.