Import(ance) of growth factors in(to) the nucleus.
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Biomedical subjects
Publications and source records attributed to M Keresztes.
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Following 35 min of adhesion to a plastic surface, an 80-kDa F-actin-binding protein was shown to be enriched in the plasma membrane fractions of porcine neutrophils by protein blotting with labeled F-actin. This protein was almost undetectable in membrane fractions of free floating neutrophils, while it was present in total cell samples. The 80-kDa protein appeared to be a major high molecular mass component of the isolated actin-cytoskeleton of both control and attached cells. The studied F-actin-binding protein was recognized by anti-moesin antibodies. Our results suggest that moesin is translocated to the plasma membrane upon adhesion of neutrophils to the extracellular surface.
Two major EHS-laminin-binding membrane glycoproteins--with apparent molecular masses of 50 kD and 18 kD--were shown by protein blotting in membrane fractions of porcine neutrophils. These galectin-like glycoproteins (binding probably via the N-acetyllactosamine sequences to laminin) could also be detected by labelled F-actin in protein blots. Following 35 min adhesion to the plastic surface, the relative amount of the 18 kD protein increased considerably in the light (plasma membrane) and in the dense (intracellular) membrane fractions of the attached cells; the 50 kD polypeptide (identified as a CD14-like protein) seemed to accumulate characteristically in the dense membrane fraction. These observations imply that direct connections could be formed between membrane glycoproteins and microfilaments during cell-substrate adhesion which may be preceded by enhanced cell surface targeting of certain adhesion receptors.
A considerable rise in inositol phosphates was observed at the beginning of myoblast fusion. Extracellular ATP, through P2-purinergic receptors, induced inositol phosphate accumulation before and after fusion; however, no effect of ATP on phosphoinositol levels could be detected during the period of fusion. The possibility of ATP being a fusion signal is discussed.
When analyzing the Roentgen documentation of 102 leukaemic children, the prevalence of bone anomalies of the extremities, pelvis and vertebral column was studied. The frequency of the abnormal or unusual findings was compared with that of 660 control subjects. The frequency of osseous anomalies proved to be 2 to 3 times higher in leukaemic children tha in the controls. Considering the number of ossification centers and the presence nutritional canal of vertebrae, in leukaemic children the ossification seemed to be retarded.
Actin-binding membrane proteins (linking microfilaments to the cell membrane) are involved in cytoskeleton-membrane interactions which are supposed to undergo profound changes during cell proliferation and development. In this study 8 polypeptides were shown to bind F-actin directly in the liver cell membranes of mature rats. From these, the abundance of three polypeptides, of 130, 50 and 36 kDa, was observed to increase considerably during postnatal development, which indicates a developmental change in the cytoskeleton-membrane interactions.
This paper presents epidemiological data on the prevalence of 26 common (i.e., having a lifetime prevalence of more than 1 per 10(4) individuals in the population) multifactorial diseases in Hungary and estimates of detriment associated with them. The detriment is expressed using 3 indicators, namely years of lost life (LL), potentially impaired life (PIL) and actually impaired life (AIL). The total prevalence of these diseases in Hungary has been estimated to be about 6500 per 10(4) individuals in the population. This estimate is in agreement with published data for other parts of the world. On the basis of clinical severity, these diseases have been split into 3 groups, namely (1) very severe (schizophrenia, multiple sclerosis, epilepsy, acute myocardial infarction and related conditions, and systemic lupus erythematosus); (2) moderately severe and/or episodal or seasonal (15 entities including Graves' disease, diabetes mellitus, gout, affective psychoses, essential hypertension, peptic ulcers, asthma, etc.); and (3) less severe than those in the first 2 groups (varicose veins, allergic rhinitis, atopic dermatitis, Scheuermann disease and adolescent idiopathic scoliosis). The essential clinical and genetic aspects of these diseases are briefly discussed. With the exception of epilepsy, none of the diseases included in our list causes mortality between ages 0 and 19. However, they are among the leading causes of death between ages 20 and 69 and thereafter. A sizeable proportion of those with essential hypertension, diabetes mellitus, rheumatoid arthritis, etc. survive to 70 years and beyond, as do those with gout, glaucoma, allergic rhinitis, psoriasis, etc. Overall, about 16% of all deaths that occur in Hungary every year (all age groups) can be attributed to these diseases. The mean number of years of PIL covers a wide range (about 20-40, 12-70 and 40-60 for groups 1, 2 and 3, respectively), the overall mean being about 24 years. However, the nature and degree of impairment and the impact on the life quality of those afflicted differ for the different diseases. Likewise, the mean number of years of AIL (for which the interval between the mean age at premature retirement and mean age at death was used as a rough index) also spans a wide range from 16 to 45, and the overall mean is about 20 years. At the population level, the diseases considered in this paper cause about 2700 years of LL, 96,000 years of PIL and about 5800 years of AIL per 10(4) individuals in the population. Relative to Mendelian diseases as a whole, these multifactorial diseases are associated with much greater detriment (LL: 1.4 X; PIL: 30 X and AIL: 3.9 X).
Chick embryos were treated with 4-aminopyridine (4 X 100 micrograms) during a critical stage of muscle development, and the effect of enhanced neuromuscular activity upon energy metabolism was studied in two fast-twitch muscles and a slow-tonic muscle. In the slow-tonic muscles of treated embryos, the specific activities of creatine kinase (CK) and lactate dehydrogenase (LDH) were reduced by 11 and 21%, respectively, compared with control values, whereas the ratios of the CK-MB isoforms and the LDH-H subunits increased to 125 and 135% of the control values, respectively. No significant changes could be shown in the enzymatic pattern of fast muscles. These results indicate that a moderate increase in neuromuscular activity of the chick embryo primarily influences the metabolism of developing slow muscles, promoting the development of an enzyme profile characteristic of slow oxidative fibres.
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The regulation of Na+ and water metabolism was studied in sheep with rumen fistula after water deprivation for 48 hours. Na+ and K+ concentrations were determined in blood plasma, blood, urine and saliva, with or without NaCl load. The results showed that the water content of the ruminal fluid plays an important role in the control of electrolyte and water metabolism. The absorption of water and Na+ from the rumen favours the maintenance of isosmolality and isovolaemia until the concentration of Na+ in the ruminal fluid has exceeded that in blood plasma. Thereafter the balance of water movement between rumen and extravascular space is shifted towards the rumen inhibiting thereby a further increase of Na+ concentration and ensuring the life conditions for the ruminal microbial population. During water deprivation not only water is lost but as a result of Na+ excretion relative hyponatraemia also ensues as can readily be assessed from the ratio of salivary Na+ and K+ concentrations. Upon NaCl load the salivary Na+/K+ ratio was increased indicating the extent of Na+ supply.
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Male rats weighing 100 g were used in a 19-day trial. The rats received diets containing varying proportions of methionine. Their absolute liver weight was lower, due to the high methionine levels, than that of the animals fed optimum rations, whereas the relative liver weight was found to be lower only in the pair-fed group. No essential differences were observed between the levels of dry matter, protein, and fat. Glycogen levels were found to be lowered only in cases when high methionine doses were administered. Pathologically low levels of glycogen were found in animals of the pair-fed group. High methionine consumption reduced the percentages of 12 glucogenetic amino acids in the liver. This, in turn, suggests an increased rate of glucose formation from amino acids, a process which was not observed in animals of the pair-fed group. High methionine doses produced a condition of hyperglycaemia, while in the pair-fed group hypoglycaemia was observed. The highest rate of secretion of thyroid hormones was found in animals receiving the optimum ration; a lower rate of secretion was observed in the animals consuming less or more methionine. In animals receiving high methionine levels the rate of hormone secretion decreased in a stepwise manner with increasing methionine supplementation. Only the highest methionine doses (5,3%) were found to have a negative effect on the maximum rate of iodine incorporation into the thyroid gland. These findings were also substantiated by histological investigations because a true pathological picture was only found in histological sections of thyroid tissue from animals fed the highest methionine doses (5,3%) The thyroid tissue of these animals consisted predominantly of small glandular alveoli whose colloid was slightly coloured. The epithelial cells of these alveoli were degenerated; some cases of liver cell disintegration and, more rarely, cellular necrosis were noted.
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19-day trials were carried out with diets containing varying amounts of methionine (0.3%), 0.8%, 1.3%, 2.0%, 2.8%, 5.3%). Diets containing 0.8% methionine were found to have the most favourable effect. Increasing methionine supplementation gradually decreased the food consumption, the daily weight gains and the efficiency of food utilization of the animals. Data on weight gains and food utilization in the "pair-fed" groups were more favourable. A stepwise decline was observed with regard to the absolute quantity of nitrogen retained (mg) as well as with regard to the quotient (%) of the amount of N retained to the amount of N utilized. Studies on the body composition of the animals showed that all those animals consuming large quantities of methionine did not synthesize protein while the process of protein synthesis in "pair fed" animals was found to be reduced, but still positive. These results suggest the occurrence of disorders in the protein metabolism arising in the organism of the animals in response to the uptake of large amounts of methionine. The relatively low fat content of the bodies of animals receiving excessive amounts of methionine, the increasing losses of fat during the trial as well as decreases in the RQ values indicated an increased rate of fat utilization in these animals. The relative water content of the body of animals receiving excessive quantities of methionine was higher, but, nevertheless, the massive weight decreases were, in the first instance, due to losses of water. Loss of water and fat as well as relative hydratation are characteristic symptoms of malnutrition. These were, to some extent, also observed in "pair fed" animals.
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