Search results for "Carboxy-terminal"
showing 3 items of 3 documents
Lack of association between ubiquitin carboxy-terminal hydrolase L1 gene polymorphism and PD.
2001
In 1998, an IL93Met mutation in the ubiquitin carboxy-terminal hydrolase L1 ( UCH-L1 ) gene was identified in a German family affected by PD.1 Recently, others2-4⇓⇓ found that the S18Y polymorphism in exon 3 of UCH-L1 is associated with a low risk of PD. To verify these interesting results, we decided to design a case-control study on the S18Y polymorphism of the UCH-L1 gene using sporadic PD cases. In the meantime, as we were analyzing our samples, a case-control study5 on 142 patients with PD and 142 age- and sex-matched control subjects did not confirm the protective effect found by Maraganore et al.2 In view of these conflicting findings, we reasoned that our contribution may have some …
Natural and engineered carboxy-terminal variants: decreased secretion and gain-of-function result in asymptomatic coagulation factor VII deficiency.
2012
We report 2 asymptomatic homozygotes for the nonsense p.R462X mutation affecting the carboxy-terminus of coagulation factor VII (FVII, 466 aminoacids). FVII levels of 3-5% and 2.7 ± 0.4% were found in prothrombin time-based and activated factor X (FXa) generation assays with human thromboplastins. Noticeably, FVII antigen levels were barely detectable (0.7 ± 0.2%) which suggested a gain-of-function effect. This effect was more pronounced with bovine thromboplastin (4.8 ± 0.9%) and disappeared with rabbit thromboplastin (0.7 ± 0.2%). This suggests that the mutation influences tissue factor/FVII interactions. Whereas the recombinant rFVII-462X variant confirmed an increase in specific activit…
Redox signaling in acute pancreatitis
2015
Acute pancreatitis is an inflammatory process of the pancreatic gland that eventually may lead to a severe systemic inflammatory response. A key event in pancreatic damage is the intracellular activation of NF-κB and zymogens, involving also calcium, cathepsins, pH disorders, autophagy, and cell death, particularly necrosis. This review focuses on the new role of redox signaling in acute pancreatitis. Oxidative stress and redox status are involved in the onset of acute pancreatitis and also in the development of the systemic inflammatory response, being glutathione depletion, xanthine oxidase activation, and thiol oxidation in proteins critical features of the disease in the pancreas. On th…