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41.
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Dusanka Milenkovic Adrin Sanz-Moreno Julia Calzada-Wack Birgit Rathkolb Oana Veronica Amarie Raffaele Gerlini Antonio Aguilar-Pimentel Jelena Misic Marie-Lune Simard Eckhard Wolf Helmut Fuchs Valerie Gailus-Durner Martin Hrab de Angelis Nils-Gran Larsson 《PLoS genetics》2022,18(5)
Mitochondrial DNA (mtDNA) maintenance disorders are caused by mutations in ubiquitously expressed nuclear genes and lead to syndromes with variable disease severity and tissue-specific phenotypes. Loss of function mutations in the gene encoding the mitochondrial genome and maintenance exonuclease 1 (MGME1) result in deletions and depletion of mtDNA leading to adult-onset multisystem mitochondrial disease in humans. To better understand the in vivo function of MGME1 and the associated disease pathophysiology, we characterized a Mgme1 mouse knockout model by extensive phenotyping of ageing knockout animals. We show that loss of MGME1 leads to de novo formation of linear deleted mtDNA fragments that are constantly made and degraded. These findings contradict previous proposal that MGME1 is essential for degradation of linear mtDNA fragments and instead support a model where MGME1 has a critical role in completion of mtDNA replication. We report that Mgme1 knockout mice develop a dramatic phenotype as they age and display progressive weight loss, cataract and retinopathy. Surprisingly, aged animals also develop kidney inflammation, glomerular changes and severe chronic progressive nephropathy, consistent with nephrotic syndrome. These findings link the faulty mtDNA synthesis to severe inflammatory disease and thus show that defective mtDNA replication can trigger an immune response that causes age-associated progressive pathology in the kidney. 相似文献
43.
Phosphorylated p40PHOX as a negative regulator of NADPH oxidase 总被引:5,自引:0,他引:5
Lopes LR Dagher MC Gutierrez A Young B Bouin AP Fuchs A Babior BM 《Biochemistry》2004,43(12):3723-3730
The leukocyte NADPH oxidase catalyzes the production of O(2)(-) from oxygen at the expense of NADPH. Activation of the enzyme requires interaction of the cytosolic factors p47(PHOX), p67(PHOX), and Rac2 with the membrane-associated cytochrome b(558). Activation of the oxidase in a semirecombinant cell-free system in the absence of an amphiphilic activator can be achieved by phosphorylation of the cytosolic factor p47(PHOX) by protein kinase C. Another cytosolic factor, p40(PHOX), was recently shown to be phosphorylated on serine and threonine residues upon activation of NADPH oxidase, but both stimulatory and inhibitory roles were reported. In the present study, we demonstrate that the addition of phosphorylated p40(PHOX) to the cell-free system inhibits NADPH oxidase activated by protein kinase C-phosphorylated p47(PHOX), an effect not observed with the unphosphorylated p40(PHOX). Moreover phosphorylated p40(PHOX) inhibits the oxidase if added before or after full activation of the enzyme. Direct mutagenesis of protein kinase C consensus sites enables us to conclude that phosphorylation of threonine 154 is required for the inhibitory effect of p40(PHOX) to occur. Although the phosphorylated mutants and nonphosphorylated mutants are still able to interact with both p47(PHOX) and p67(PHOX) in pull-down assays, their proteolysis pattern upon thrombin treatment suggests a difference in conformation between the phosphorylated and nonphosphorylated mutants. We postulate that phosphorylation of p40(PHOX) on threonine 154 leads to an inhibitory conformation that shifts the balance toward an inhibitory role and blocks oxidase activation. 相似文献
44.
The physiological response of nonrestrained rats to the presence of immobilized conspecifics during the beginning of the active period and the inactive period was studied. In immobilized animals concentrations of serum corticosterone (SCS), serum glucose, and liver glycogen, and the activity of liver tyrosine aminotransferase (TAT) during both the active and the inactive periods, were consistent with earlier studies. In nonrestrained rats the presence of immobilized conspecifics induced a significant increase in SCS during the active period, whereas it had no effect during the inactive period. The level of TAT was significantly elevated in the nonrestrained rats only during the inactive period and remained unchanged during the active period. The results demonstrate a physiological influence of stressed rats on unstressed conspecifics and provide evidence for regulation of TAT activity that is dependent on the situation and the time of day. 相似文献
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Conformation, stability, and active-site cysteine titrations of Escherichia coli D26A thioredoxin probed by Raman spectroscopy. 下载免费PDF全文
S. Vohník C. Hanson R. Tuma J. A. Fuchs C. Woodward G. J. Thomas Jr 《Protein science : a publication of the Protein Society》1998,7(1):193-200
The active-site cysteines (Cys 32 and Cys 35) of Escherichia coli thioredoxin are oxidized to a disulfide bridge when the protein mediates substrate reduction. In reduced thioredoxin, Cys 32 and Cys 35 are characterized by abnormally low pKa values. A conserved side chain, Asp 26, which is sterically accessible to the active site, is also essential to oxidoreductase activity. pKa values governing cysteine thiol-thiolate equilibria in the mutant thioredoxin, D26A, have been determined by direct Raman spectrophotometric measurement of sulfhydryl ionizations. The results indicate that, in D26A thioredoxin, both sulfhydryls titrate with apparent pKa values of 7.5+/-0.2, close to values measured previously for wild-type thioredoxin. Sulfhydryl Raman markers of D26A and wild-type thioredoxin also exhibit similar band shapes, consistent with minimal differences in respective cysteine side-chain conformations and sulfhydryl interactions. The results imply that neither the Cys 32 nor Cys 35 SH donor is hydrogen bonded directly to Asp 26 in the wild-type protein. Additionally, the thioredoxin main-chain conformation is largely conserved with D26A mutation. Conversely, the mutation perturbs Raman bands diagnostic of tryptophan (Trp 28 and Trp 31) orientations and leads to differences in their pH dependencies, implying local conformational differences near the active site. We conclude that, although the carboxyl side chain of Asp 26 neither interacts directly with active-site cysteines nor is responsible for their abnormally low pKa values, the aspartate side chain may play a role in determining the conformation of the enzyme active site. 相似文献
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Male Corncrakes Crex crex extend their home ranges by visiting the territories of neighbouring males
Capsule Radiotracked male Corncrake often intruded on the territories of neighbouring males. Aims To test that intruders' visits are goal-directed, not just a by-product of extended spatial activity during daylight hours. Methods Using radiotelemetry, we sampled a total of 20 three-day home ranges from 11 tagged males. We recorded daily vocal activity and used a permutation test to see if the movements of tracked males were independent of the position of neighbouring males. Results The majority of males who had a neighbouring male, up to approximately 600 m from their night calling site, undertook goal-directed visits to the neighbour's territory. Males undertook these visits every day, or every other day, when the neighbours were close. Males undertook visits approximately once every three days when they were more distant. The time spent in the neighbour's territory was longest where the distance between night calling sites was about 200 m. Males tended to be silent in neighbour's territory, apparently to prevent confrontation. Otherwise the distance of neighbouring males did not significantly affect daytime vocal activity. Visiting males tended to sing more often in their home territories. Conclusions Daily movement of the majority of males was towards the neighbouring male's calling site. We suggest that the purpose of these visits was to seek females. These males may try to drive a female into their territory or gain extra-pair copulation. 相似文献
50.
Kristin Moreth Ralf Fischer Helmut Fuchs Valérie Gailus-Durner Wolfgang Wurst Hugo A. Katus Raffi Bekeredjian Martin Hrabě de Angelis 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》2014,184(6):763-775
Mice with genetic alterations are used in heart research as model systems of human diseases. In the last decade there was a marked increase in the recognition of genetic diversity within inbred mouse strains. Increasing numbers of inbred mouse strains and substrains and analytical variation of cardiac phenotyping methods require reproducible, high-throughput methods to standardize murine cardiovascular physiology. We describe methods for non-invasive, reliable, easy and fast to perform echocardiography and electrocardiography on awake mice. This method can be used for primary screening of the murine cardiovascular system in large-scale analysis. We provide insights into the physiological divergence of C57BL/6N, C57BL/6J, C3HeB/FeJ and 129P2/OlaHsd mouse hearts and define the expected normal values. Our report highlights that compared to the other three strains tested C57BL/6N hearts reveal features of heart failure such as hypertrophy and reduced contractile function. We found several features of the mouse ECG to be under genetic control and obtained several strain-specific differences in cardiac structure and function. 相似文献