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R Sever

Publications and source records attributed to R Sever.

13 recordsLinked to original sources

Mutations that suppress the thermosensitivity of green fluorescent protein.

BACKGROUND: The green fluorescent protein (GFP) of the jellyfish Aequorea victoria has recently attracted great interest as the first example of a cloned reporter protein that is intrinsically fluorescent. Although successful in some organisms, heterologous expression of GFP has not always been straight forward. In particular, expression of GFP in cells that require incubation temperatures around 37 degrees C has been problematic. RESULTS: We have carried out a screen for mutant forms of GFP that fluoresce more intensely than the wild-type protein when expressed in E. coli at 37 degrees C. We have characterized a bright mutant (GFPA) with reduced sensitivity to temperature in both bacteria and yeast, and have shown that the amino acids substituted in GFPA act by preventing temperature-dependent misfolding of the GFP apoprotein. We have shown that the excitation and emission spectra of GFPA can be manipulated by site-directed mutagenesis without disturbing its improved folding characteristics, and have produced a thermostable folding mutant (GFP5) that can be efficiently excited using either long-wavelength ultraviolet or blue light. Expression of GFP5 results in greatly improved levels of fluorescence in both microbial and mammalian cells cultured at 37 degrees C. CONCLUSIONS: The thermotolerant mutants of GFP greatly improve the sensitivity of the protein as a visible reporter molecule in bacterial, yeast and mammalian cells. The fluorescence spectra of these mutants can be manipulated by further mutagenesis without deleteriously affecting their improved folding characteristics, so it may be possible to engineer a range of spectral variants with improved tolerance to temperature. Such a range of sensitive reporter proteins will greatly improve the prospects for GFP-based applications in cells that require relatively high incubation temperatures.

Amino Acid Sequence↗

The c-Mos proto-oncogene product stimulates c-Jun transcriptional activity by a MAP kinase-dependent mechanism.

The AP-1 transcription factor family is subject to sophisticated regulation in response to cell growth and stress stimuli. We show here that the transcriptional activity of c-Jun, a key AP-1 component, is stimulated by overexpression of the c-Mos proto-oncogene product in mammalian cells. This stimulation requires serines 63 and 73 of c-Jun, indicating that it is likely to be mediated by proline-directed kinase(s). Co-transfection of MKP-1, a specific MAP kinase antagonist, blocks the stimulation of c-Jun by c-Mos, while co-transfection of a dominant negative form of c-Raf-1 does not. Conditioned medium from c-Mos transfected cells fails to activate c-Jun in recipient cells, arguing against the involvement of a diffusible mitogen. These data suggest that c-Mos exerts its effect on c-Jun directly through a MAP kinase, acting downstream of c-Raf-1.

3T3 Cells↗

Urinary excretion of nitrite and nitrate in experimental glomerulonephritis reflects systemic immune activation and not glomerular synthesis.

In immune-induced glomerulonephritis (gn), glomeruli (gl) synthesize nitric oxide (NO), and urinary nitrite (NO2-) excretion is increased. In mammals on a low nitrate (NO3-) diet, urinary NO3- is a measure of endogenous NO3- synthesis. Excretion is increased after administration of macrophage activators, reflecting induction of NO production. To determine whether increased urinary NO2- gn is due to glomerular synthesis we studied urinary NO2-/NO3- in accelerated nephrotoxic nephritis induced by preimmunization with rabbit immunoglobulin G (IgG), followed by rabbit anti-rat nephrotoxic globulin, and in control rats similarly preimmunized with rabbit IgG, but followed by normal rabbit serum. Both urinary NO2- and NO3- were increased by i.p. preimmunization with rabbit IgG (peak 463 +/- 171 nmol NO2-/60.3 +/- 9.4 nmol NO3-/24 h, P < 0.001 for both NO2- and NO3- compared with preimmunization levels). Repeat immunization with i.v. rabbit anti-rat nephrotoxic globulin (nephritic rats) or normal rabbit globulin (control rats) again increased urinary NO2- and NO3-. There was no statistically significant difference in urinary NO2- and NO3- levels between nephritic rats where globulin had nephrotoxic activity and the control rats injected with normal rabbit globulin, despite increased NO2- synthesis in ex vivo nephritic glomeruli after nephrotoxic globulin (7.9 +/- 1.9 nmol/2000 gl/48 h; controls 3.2 +/- 1.0 nmol/2000 gl/48 h). Thus neither urinary NO2- nor NO3- levels reflect local activation of the NO pathway in glomeruli. As reported for other stimulants, we show here that systemic stimulation with foreign antigen increased NO synthesis.

Animals↗