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191.
Cenni V Bertacchini J Beretti F Lattanzi G Bavelloni A Riccio M Ruzzene M Marin O Arrigoni G Parnaik V Wehnert M Maraldi NM de Pol A Cocco L Marmiroli S 《Journal of proteome research》2008,7(11):4727-4735
Akt/PKB is a central activator of multiple signaling pathways coupled with a large number of stimuli. Although both localization and activity of Akt in the nuclear compartment are well-documented, most Akt substrates identified so far are located in the cytoplasm, while nuclear substrates have remained elusive. A proteomic-based search for nuclear substrates of Akt was undertaken, exploiting 2D-electrophoresis/MS in combination with an anti-Akt phosphosubstrate antibody. This analysis indicated lamin A/C as a putative substrate of Akt in C2C12 cells. In vitro phosphorylation of endogenous lamin A/C by recombinant Akt further validated this result. Moreover, by phosphopeptide analysis and point mutation, we established that lamin A/C is phosphorylated by Akt at Ser404, in an evolutionary conserved Akt motif. To delve deeper into this, we raised an antibody against the lamin A Ser404 phosphopeptide which allowed us to determine that phosphorylation of lamin A Ser404 is triggered by the well-known Akt activator insulin, and is therefore to be regarded as a physiological response. Remarkably, expression of S404A lamin A in primary cells from healthy tissue caused the nuclear abnormalities that are a hallmark of Emery-Dreifuss muscular dystrophy (EDMD) cells. Indeed, it is known that mutations at several sites in lamin A/C cause autosomal dominant EDMD. Very importantly, we show here that Akt failed to phosphorylate lamin A/C in primary cells from an EDMD-2 patient with lamin A/C mutated in the Akt consensus motif. Together, our data demonstrate that lamin A/C is a novel signaling target of Akt, and implicate Akt phosphorylation of lamin A/C in the correct function of the nuclear lamina. 相似文献
192.
Paciolla C De Tullio MC Chiappetta A Innocenti AM Bitonti MB Liso R Arrigoni O 《Plant & cell physiology》2001,42(8):857-863
Administration of 1 mM dehydroascorbate (DHA) results in a rapid and large increase in cellular ascorbate (AA) content in both Lupinus albus L. and Allium cepa L. root tips. Uptake of DHA from the medium occurs at a high rate within 10-12 h of incubation, and is slowed down thereafter. In the first few h, DHA reduction to AA is apparently correlated to GSH depletion and slightly higher DHA reductase activity. DHA incubation also seems to induce new GSH synthesis. Longer DHA incubation (24 h) affects root growth by inhibiting cell proliferation. At this stage, an apparently generalised oxidation of SH-containing proteins is observed in DHA-treated roots. Treatment with 1 mM L-galactono-gamma-lactone, the last precursor of AA biosynthesis, results in an increase in AA content similar to that obtained with DHA, but stimulates growth and affects the redox state of SH-containing proteins in the opposite way. A possible multi-step mechanism of DHA reduction/removal is suggested and the hypothesis that DHA inhibits cell cycle progression by affecting the redox state of SH-containing proteins is discussed. 相似文献
193.
Positive selection and the molecular evolution of a gene of male reproduction, Acp26Aa of Drosophila 总被引:4,自引:1,他引:3
The gene for a male ejaculatory protein, Acp26Aa, in four sibling species
of the Drosophila melanogaster subgroup has previously been shown to have a
nonsynonymous rate (Ka) of nucleotide substitution that is
indistinguishable from the synonymous rate (Ks). By examining this gene in
two other species of this subgroup, we found that Ka is generally large and
can sometimes be more than twice as large as Ks. This suggests that
positive selection may be operating at this locus of male reproduction.
相似文献
194.
195.
Studies on the binding site of the galactose-specific agglutinin PA-IL from Pseudomonas aeruginosa 总被引:1,自引:0,他引:1
The binding properties of Pseudomonas aeruginosa agglutinin-I (PA-IL) with
glycoproteins (gps) and polysaccharides were studied by both the
biotin/avidin-mediated microtiter plate lectin-binding assay and the
inhibition of agglutinin-glycan interaction with sugar ligands. Among 36
glycans tested for binding, PA-IL reacted best with two glycoproteins
containing Galalpha1-->4Gal determinants and a human blood group ABO
precursor equivalent gp, but this lectin reacted weakly or not at all with
A and H active gps or sialylated gps. Among the mammalian disaccharides
tested by the inhibition assay, the human blood group Pkactive
Galalpha1-->4Gal, was the best. It was 7.4-fold less active than
melibiose (Galalpha1-->6Glc). PA-IL has a preference for the
alpha-anomer in decreasing order as follows: Galalpha1-->6
>Galalpha1-->4 >Galalpha1-->3. Of the monosaccharides studied,
the phenylbeta derivatives of Gal were much better inhibitors than the
methylbeta derivative, while only an insignificant difference was found
between the Galalpha anomer of methyl- and p -NO2-phenyl derivatives. From
these results, it can be concluded that the combining size of the
agglutinin is as large as a disaccharide of the alpha-anomer of Gal at
nonreducing end and most complementary to Galalpha1-->6Glc. As for the
combining site of PA-IL toward the beta-anomer, the size is assumed to be
less than that of Gal; carbon-6 in the pyranose form is essential, and
hydrophobic interaction is important for binding.
相似文献
196.
G Benzi P Panceri M de Bernardi R Villa E Arcelli L D'Angelo E Arrigoni F Bertè 《Journal of applied physiology》1975,38(4):565-569
Some mitochondrial enzymatic activities (succinate dehydrogenase, NADH cytochrome reductase, cytochrome oxidase) were studied in the gastrocnemius and soleus muscle of the rat. The modifications of the enzyme activity, induced by endurance training, were found to be functions of 1) daily work load and 2) total training time. The treatment with an effective dose of vasodilating substances (papaverine, nicergoline, dipyridamole, and bamethan) showed that 1) nicergoline, bamethan, and dipyridamole were differently able to shorten the time of appearance of the increase in the enzymatic activities; 2) however, long-term treatments with these drugs did not prove able to modify the plateau level of the enzymatic activity increase, for a given amount of endurance training; 3) the pharmacodynamic effect on enzymatic activities was in no way related to the vasodilating effect of these drugs, since the effect was not observed with papaverine. The transition from a given level of endurance training to a lower one led to a proportional decrease of the mitochondrial enzymatic activities, thus pointing out the relation between amount of training and enzymatic activity. The drugs studied were unable to modify the decrease of enzymatic activity induced by lower work load. 相似文献
197.
De Santis Aurelio; Borraccino Giuseppe; Arrigoni Oreste; Palmieri Ferdinando 《Plant & cell physiology》1975,16(5):911-923
The permeability properties and mechanism of Pi transport wereinvestigated in purified bean mitochondria.
- Purified bean mitochondria are impermeable to small moleculesand ions. However, Pi, arsenate, acetate and formate can enterthe osmotically active space of bean mitochondria.
- Nigericinor the association of valinomycin and FCCP cause mitochondrialswelling in isoosmotic potassium phosphate.
- The SH-blockingreagents mersalyl, pHMB and NEM inhibit variousmitochondrialfunctions dependent on the translocation of Piand arsenateacross the membrane. These include the respirationstimulatedby ADP, Ca2++Pi, and K++valinomycin +Pi; the swellingin ammoniumphosphate medium and, in the presence of nigericin,in potassiumphosphate medium; the energy-linked yalinomycin-inducedswellingand the subsequent CICCP-induced shrinking. The uncoupler-stimulatedrespiration, as well as the other processes when acetate issubstituted for Pi, are not influenced by SH reagents.
- Mersalyland pHMB cause complete inhibition at about 20 nmoles/mgprotein,whereas, NEM is effective at about 1 µmole/mgprotein.The inhibition by mersalyl and pHMB, but not that byNEM, issigmoidal and reversed by 2-mercaptoethanol. Non-inhibitoryamounts of mersalyl protect the Pi transport from irreversibleinhibition by NEM.
- We concluded that a carrier-mediated transportsystem for Piis present in bean mitochondria, and that someof its propertiesare similar to the Pi carrier of animal mitochondria.
198.
Large changes occur in the ascorbate system during the development of Vicia faba seed and these appear closely related to what are generally considered to be the three stages of embryogenesis. During the first stage, characterized by embryonic cells with high mitotic activity, the ascorbic acid/dehydroascorbic acid ratio is about 7, whereas in the following stage, characterized by rapid cell elongation (stage 2), it is lower than 1. The different ascorbic/dehydroascorbic ratio may be correlated with the level of ascorbate free radical reductase activity, which is high in stage 1 and lower in stage 2. Ascorbate peroxidase activity is high and remains constant throughout stages 1 and 2, but it decreases when the water content of the seed begins to decline (stage 3). In the dry seed, the enzyme disappears together with ascorbic acid. Ascorbate peroxidase activity is observed to be 10 times higher than that of catalase, suggesting that ascorbate peroxidase, rather than catalase, is utilized in scavenging the H2O2 produced in the cell metabolism. There is no ascorbate oxidase in the seed of V. faba. V. faba seeds acquire the capability to synthesize ascorbic acid only after 30 days from anthesis, i.e. shortly before the onset of seed desiccation. This suggests that (a) the young seed is furnished with ascorbic acid by the parent plant throughout the period of intense growth, and (b) it is necessary for the seed to be endowed with the ascorbic acid biosynthetic system before entering the resting state so that the seed can promptly synthesize the ascorbic acid needed to reestablish metabolic activity when germination starts. 相似文献
199.
G. Abbiati T. Fossati M. Arrigoni P. Rolle G.L. Dognini C. Castiglioni 《Journal of chromatography. B, Analytical technologies in the biomedical and life sciences》1991,566(2)
A high-performance liquid chromatographic method using an enzymic reactor for determination of l-α-glycerophosphorylcholine in pharmaceutical forms is described. The procedure includes incubation of l-α-glycerophosphorylcholine with glycerophosphorylcholine phosphodiesterase (EC 3.1.4.2), giving choline and glycerophosphate, and subsequent chromatography of choline with a post-column enzymic reactor and electrochemical detection. The results obtained show a close linearity of the whole assay from 2 to 150 nmol/ml l-α-glycerophosphorylcholine, the sensitivity being 2 pmol per 20 μl of injected sample. The precision of the method in the analysis of l-α-glycerophosphorylcholine in pharmaceutical forms, ampoules and capsules, was 1.34 and 1.21%, respectively. 相似文献