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961.
Jan Celichowski Katarzyna Kryściak Piotr Krutki Henryk Majczyński Teresa Górska Urszula Sławińska 《Journal of electromyography and kinesiology》2010,20(3):532-541
The contractile properties of motor units (MUs) were investigated in the medial gastrocnemius (MG) muscle in rats after the spinal cord hemisection at a low thoracic level. Hemisected animals were divided into 4 groups: 14, 30, 90 and 180 days after injury. Intact rats formed a control group. The mass of the MG muscle did not change significantly after spinal cord hemisection, hind limb locomotor pattern was almost unchanged starting from two weeks after injury, but contractile properties of MUs were however altered. Contraction time (CT) and half-relaxation time (HRT) of MUs were prolonged in all investigated groups of hemisected rats. The twitch-to-tetanus ratio (Tw/Tet) of fast MUs after the spinal cord hemisection increased. For slow MUs Tw/Tet values did not change in the early stage after the injury, but significantly decreased in rats 90 and 180 days after hemisection. As a result of hemisection the fatigue resistance especially of slow and fast resistant MU types was reduced, as well as fatigue index (Fat I) calculated for the whole examined population of MUs decreased progressively with the time. After spinal cord hemisection a reduced number of fast MUs presented the sag at frequencies 30 and 40 Hz, however more of them revealed sag in 20 Hz tetanus in comparison to control group. Due to considerable changes in twitch contraction time and disappearance of sag effect in unfused tetani of some MUs in hemisected animals, the classification of MUs in all groups of rats was based on the 20 Hz tetanus index (20 Hz Tet I) but not on the standard criteria usually applied for MUs classification. MU type differentiations demonstrated some clear changes in MG muscle composition in hemisected animals consisting of an increase in the proportion of slow MUs (likely due to an increased participation of the studied muscle in tonic antigravity activity) together with an increase in the percentage of fast fatigable MUs. 相似文献
962.
Katarzyna Chojnacka Ralph Brehm Karola Weider Anna Hejmej Marta Lydka Ilona Kopera-Sobota Barbara Bilinska 《Reproductive biology》2012,12(4):341-346
Gap junctions are intercellular channels that connect the cytoplasm of adjacent cells, allowing the passage of small molecules (<1 kDa) and thereby the regulation of many different processes. In the male gonad, the most abundant protein that builds gap junctions is connexin 43 (Cx43, GJA1). Specific knock-out of Sertoli cells (SCCx43KO?/?) results in an impaired spermatogenesis up to the Sertoli cell only syndrome. The aim of this study was to compare the testicular expression pattern of the androgen receptor (AR) in wild type (WT) and SCCx43KO?/? mice. In both WT and SCCx43KO?/? testes, the AR staining was restricted to the nuclei of Sertoli, Leydig, and peritubular cells. However, the staining intensity varied between control and mutant mice. In the latter, the AR expression depended on the level of the seminiferous tubule impairment. In tubules with qualitatively normal spermatogenesis, the AR protein expression was similar to that observed in the testes of WT mice. Conversely, seminiferous tubules with an arrest of spermatogenesis at the level of spermatogonial or spermatocyte phase expressed the AR at a lower intensity. In Sertoli cell only tubules (no germ cells in the tubules), the AR immunoreaction was mainly weak or undetectable. Moreover, AR staining was lower in Sertoli and Leydig cells (p < 0.001 and p < 0.05, respectively) of SCCx43KO?/? mice compared to WT mice, as revealed by a semiquantitative analysis. In conclusion, the deletion of Cx43 leads to a partial disruption of the AR signaling pathway, indicating a possible reason for the observed impaired spermatogenesis. 相似文献
963.
Katarzyna Paraszkiewicz Przemysław Bernat Jerzy Długoński 《International biodeterioration & biodegradation》2009,63(1):100-105
In the first step of this investigation the toxicity of Ni2+, Cu2+, and Zn2+ ions to the emulsifier producing strain of Curvularia lunata was assessed. Among all the heavy metals studied, Ni2+ ions were found to be the most toxic to C. lunata, whereas Zn2+ ions exhibited the lowest toxicity. Moreover, only Ni2+, when used at sublethal concentration (5 mM) caused lysis of some hyphal tip cells after a short-term exposure (5 h). In the next step, emulsifier production, accumulation of heavy metals by mycelia and emulsifier as well as saturation of cellular fatty acids were examined in 48-h-old cultures where fungal growth intensity was not inhibited by heavy metals (in the presence of Ni2+, Cu2+, and Zn2+ ions at the initial concentration of 1, 5, and 15 mM, respectively) and in cultures where approximately 50% biomass inhibition occurred (in the presence of Ni2+, Cu2+, and Zn2+ ions at the initial concentrations of 3, 10, and 17.5 mM, respectively). Among all the heavy metals studied only Ni2+ ions did not induce emulsifier production. As compared with the control, only biomass treated with Ni2+ ions displayed an increase in total lipid saturation. This effect resulted mainly from the decrease in linoleic acid (18:2) content correlated with the increase in the amount of stearic acid (18:0). The possible mechanisms by which Ni2+ ions could alter the fatty acid profile of C. lunata and the protective role of the emulsifier were also discussed. 相似文献
964.
Wiśniewska K Michnowska-Swincow E Galiński J 《Medycyna do?wiadczalna i mikrobiologia》2004,56(3):217-223
Occurrence of high-level mupirocin resistant coagulase-negative staphylococci in 5 hospitals in the region of Gdansk was determined. The study was carried out on 192 staphylococcal strains isolated from patients and medical staff. The mupirocin resistant strains were detected by 5 microgram mupirocin disc. The minimal inhibitory concentration (MIC) for mupirocin was estimated by E-tests. The mupirocin resistant strains were characterised by antibiotic sensitivity, including MIC for glycopeptides and oxacillin. Biotypes of resistant strains were also determined. Eight high-level mupirocin resistant strains (4.7%) were found. Only one strain expressed low-level resistance. All but one of high-level mupirocin resistant strains were resistant to methicillin. Six of them belonged to the S. epidermidis species but differences in the biotypes and antibiotic resistance patterns of these strains suggest they did not have a common origin. 相似文献
965.
INTRODUCTION: Therapeutic approach to incidentaloma, in spite of existing algorithms, is not always obvious due to diagnostic difficulties. The aim of the study was to assess the validity of the initial diagnoses of incidentaloma which determined the qualification for the operation. MATERIAL AND METHODS: 125 patients hospitalised in the Endocrinology Dept. of the Medical University of Bialystok in the years 2003-2005 and in the Endocrinology dept. of Voivodeship Hospital of Bialystok. The patients were clinically and hormonally examined (metanephrines in daily urine collection, daily cortisol rhythm, short dexamethasone test, aldosterone, and renin plasma activity, Na, K levels in the serum) as well as computer tomography of the adrenal glands were performed. RESULTS: 42 patients were qualified for adrenalectomy. Adenoma was confirmed in 25 patients (in 7 subclinical Cushing syndrome was diagnosed, in 2 Conn disease, in 16 inactive changes), phaeochromocytoma in 6 patients, cysts in 3, lipoma in 2, carcinoma in one, in 4 patients metastases (in 2 of kidney carcinoma, in 1 of malignant melanoma and in 1 of planocellular carcinoma) and in one oncocytoma. Metanephrines urine measurements showed 33% of false positive results. CONCLUSIONS: Qualification for adrenalectomy requires an assessment of tumor's enlargement, its tissue density, morphology and growth dynamics. To reduce the percentage of false positive results of metanephrine measurement there is to eliminate an influence of some drugs, victuals, beverages and nicotine and eventually to carry out additional tests. The decision as to proceeding with adrenal incidentaloma should be individualized based on clinical symptoms, hormonal tests and tumor morphology. 相似文献
966.
Iwona Żur Ewa Dubas Monika Krzewska Franciszek Janowiak Katarzyna Hura Ewa Pociecha Renata Bączek-Kwinta Agnieszka Płażek 《Plant Cell, Tissue and Organ Culture》2014,119(1):79-94
To verify the hypothesis that cell redox status regulates the process of microspore embryogenesis (ME), reactive oxygen species (ROS) generation and the activity of enzymatic and non-enzymatic antioxidants were analyzed in eight doubled haploid lines of triticale with significant differences in embryogenic potential. The analyses were performed in anthers excised from freshly cut tillers (control) and from low temperature (LT) pre-treated tillers (3 weeks at 4 °C) in which ME has been initiated. Significant associations between ME effectiveness and the variables studied were found. In control cultures, high superoxide dismutase (SOD) activity appeared crucial for microspore viability. On the other hand, positive though non-linear correlation between ME effectiveness and H2O2 generation, and negative correlation with catalase (CAT) activity suggest that some threshold level of H2O2 is important for successful ME initiation. LT tillers pre-treatment significantly increased H2O2 accumulation, which had a negative effect on ME effectiveness. However, even high level of H2O2 did not endanger cell viability as long as the cells exhibited high activity of ROS-decomposing enzymes (SOD, CAT and POX). The ability to sustain antioxidative enzyme activity under cold stress in the dark was another important requirement for high effectiveness of ME, allowing for the generation of the signal initiating microspore reprogramming and simultaneously protecting the cells from the toxic effects of ROS production. The role of antioxidative enzymes cannot be replaced even by high activity of non-enzymatic antioxidants. In conclusion, genetically controlled but environmentally modified cell tolerance to oxidative stress seems to play an important role in triticale ME. 相似文献
967.
Role of survivin in mitosis 总被引:2,自引:0,他引:2
Human survivin is a member of the IAP (Inhibitor of Apoptosis) family. It was reported that survivin expression is associated with drug resistance, cancer progression and low patient survival rate in many cancers. Survivin is implicated in both: inhibition of apoptosis and regulation of cell division. As a member of Chromosomal Passenger Complex (CPC) it is involved in sister chromatids segregation during mitosis. On the other hand, survivin plays an important role in the surveillance mechanism called mitotic spindle assembly checkpoint (MSAC) which regulates metaphase to anaphase transition during mitosis. Additionally, survivin is necessary for cytokinesis progression. The present review is a summary of survivin's functions, focused on its role in cell division in normal and cancer cells, as well as introduction to discussion about anticancer therapies based on survivin depletion. 相似文献
968.
Lincosamides are a class of antibiotics used both in clinical and veterinary practice for a wide range of pathogens. This group of drugs inhibits the activity of the bacterial ribosome by binding to the 23S RNA of the large ribosomal subunit and blocking protein synthesis. Currently, three X-ray structures of the ribosome in complex with clindamycin are available in the Protein Data Bank, which reveal that there are two distinct conformations of the pyrrolidinyl propyl group of the bound clindamycin. In this work, we used quantum mechanical methods to investigate the probable conformations of clindamycin in order to explain the two binding modes in the ribosomal 23S RNA. We studied three lincosamide antibiotics: clindamycin, lincomycin, and pirlimycin at the B3LYP level with the 6-31G** basis set. The focus of our work was to connect the conformational landscape and electron densities of the two clindamycin conformers found experimentally with their physicochemical properties. For both functional conformers, we applied natural bond orbital (NBO) analysis and the atoms in molecules (AIM) theory, and calculated the NMR parameters. Based on the results obtained, we were able to show that the structure with the intramolecular hydrogen bond C=O…H-O is the most stable conformer of clindamycin. The charge transfer between the pyrrolidine-derivative ring and the six-atom sugar (methylthiolincosamide), which are linked via an amide bond, was found to be the dominant factor influencing the high stability of this conformer. 相似文献
969.
Renata?S?omnicka Helena?Olczak-Woltman Aleksandra?Korzeniewska Dariusz?Gozdowski Katarzyna?Niemirowicz-Szczytt Grzegorz?BartoszewskiEmail authorView authors OrcID profile 《Molecular breeding : new strategies in plant improvement》2018,38(9):111
One of the most important cucumber diseases is bacterial angular leaf spot (ALS), whose increased occurrence in open-field production has been observed over the last years. To map ALS resistance genes, a recombinant inbred line (RIL) mapping population was developed from a narrow cross of cucumber line Gy14 carrying psl resistance gene and susceptible B10 line. Parental lines and RILs were tested under growth chamber conditions as well as in the field for angular leaf spot symptoms. Based on simple sequence repeat and DArTseq, genotyping a genetic map was constructed, which contained 717 loci in seven linkage groups, spanning 599.7 cM with 0.84 cM on average between markers. Monogenic inheritance of the lack of chlorotic halo around the lesions, which is typical for ALS resistance and related with the presence of recessive psl resistance gene, was confirmed. The psl locus was mapped on cucumber chromosome 5. Two major quantitative trait loci (QTL) psl5.1 and psl5.2 related to disease severity were found and located next to each other on chromosome 5; moreover, psl5.1 was co-located with psl locus. Identified QTL were validated in the field experiment. Constructed genetic map and markers linked to ALS resistance loci are novel resources that can contribute to cucumber breeding programs. 相似文献
970.
Redox regulation of SUMO enzymes is required for ATM activity and survival in oxidative stress
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Nicolas Stankovic‐Valentin Katarzyna Drzewicka Cornelia König Elmar Schiebel Frauke Melchior 《The EMBO journal》2016,35(12):1312-1329
To sense and defend against oxidative stress, cells depend on signal transduction cascades involving redox‐sensitive proteins. We previously identified SUMO (small ubiquitin‐related modifier) enzymes as downstream effectors of reactive oxygen species (ROS). Hydrogen peroxide transiently inactivates SUMO E1 and E2 enzymes by inducing a disulfide bond between their catalytic cysteines. How important their oxidation is in light of many other redox‐regulated proteins has however been unclear. To selectively disrupt this redox switch, we identified a catalytically fully active SUMO E2 enzyme variant (Ubc9 D100A) with strongly reduced propensity to maintain a disulfide with the E1 enzyme in vitro and in cells. Replacement of Ubc9 by this variant impairs cell survival both under acute and mild chronic oxidative stresses. Intriguingly, Ubc9 D100A cells fail to maintain activity of the ATM–Chk2 DNA damage response pathway that is induced by hydrogen peroxide. In line with this, these cells are also more sensitive to the ROS‐producing chemotherapeutic drugs etoposide/Vp16 and Ara‐C. These findings reveal that SUMO E1~E2 oxidation is an essential redox switch in oxidative stress. 相似文献