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1.
The presence of acid and alkaline DNases in nuclei of chick brain cells has been demonstrated. The activities of these two DNases along with those of DNA-polymerases were assessed in chicken tissues with known varied cell proliferative capacities (eg., spleen, kidney and brain) at different ages. The results indicate that the acid and alkaline DNases are probably the 'house keeping' enzymes with a constitutive role in DNA repair process, the former with a DNA-repair process that is linked to cell proliferation (DNA synthesis) while the latter with the basal DNA-repair operations that must go on at all times without any regard to the cell division process. Chicken brain, unlike that of rat, possesses significant levels of aphidicolin sensitive DNA-polymerase(s) that are considered to be more replication oriented enzymes suggesting that the replication potential of adult and old avian brain cells may be different from that of a mammalian brain.  相似文献   

2.
Summary DNase activities that show a non-specific pattern of DNA degradation on agarose gels have been detected in six strains of Streptomyces. All the enzymes were located in the cell wall-cytoplasmic membrane space, and released after protoplast production. Synthesis of these nucleases was dependent on the composition of the growth media. Differentiation on agar plates was affected by the same nutritional conditions that regulate DNAse production. All DNases were deoxyriboendonucleases that required Mg2+ and a low ionic concentration for optimal activity. The molecular masses of native DNases range from 37±2 to 43±4 kDa. The enzymes produced nicks in double-stranded DNA and were unable to digest RNA. The widespread presence, location and characteristics of such nucleases in Streptomyces suggest a common role for these enzymes. Offprint requests to: J. Sánchez  相似文献   

3.
Abstract— Studies were made on the effects of undernutrition at different ages during the neonatal period and of the comparative effects of postweaning protein and calorie deficiencies in neonatally undernourished or normally reared animals. Neonatal undernutrition resulted in deficits in body wt, brain wt and the activities of brain glutamate dehydrogenase and glutamate decarboxylase. Percentage deficits in brain wt were maximum in the first week of life but those in brain enzymes were greater in the second week. Rehabilitation of neonatally undernourished animals reversed the deficits in brain wt and brain enzymes. Post-weaning protein deficiency produced similar deficits in brain enzymes in both neonatally undernourished and normally reared animals. With post-weaning undernutrition, however, these deficits were found only in animals subjected to neonatal undernutrition as well.  相似文献   

4.
The content of DNA, RNA and protein in cerebellum at different stages of the life span of rat as well as the ratios of protein to DNA, showed-that in this region extensive cell proliferation occurs between the 1st and 7th day after birth and once again between the ages of 225 and 750 days. The putative DNA degrading enzymes, acid and alkaline DNases, showed a positive correlation with the rapid DNA accretion noticed during developmental stages as well as during old age. From these results, it could be presumed that there was a second bout of glial cell multiplication in aging cerebellum and that DNases must be playing some important role in the process.  相似文献   

5.
Abstract— The severity of mental changes in malnourished children is related to both the period of development when the malnutrition occurs and the amount of environmental stimulation. In the present study the effect of imposing protein undernutrition during the period of gestation or postweaning period, and protein-energy undernutrition during the suckling period on cholinergic enzyme activity was investigated in the rat. Six different dietary treatments were given and the activity of ChAc, ChE, and AChE determined in the forebrain, brainstem, and cerebellum of male rats on day 49. Undernutrition imposed during gestation, suckling or postweaning all resulted in changes in cholinergic enzyme activity. The direction and degree of change of enzyme activity depended on the period when undernutrition was imposed as well as the brain region. In the forebrain ChE and AChE activities were altered, in the brainstem, ChAc, ChE and AChE activities were altered, and in the cerebellum ChAc activity was altered. The effect on the activity of the individual cholinergic enzymes was complex and was not the same in the different regions of the brain or even for the same brain region exposed to undernutrition during different periods of development. These results along with earlier work indicate that cholinergic enzyme activity in brain of undernourished rats can be altered by both the period of development when undernutrition is imposed and the amount of environmental stimulation.  相似文献   

6.
S D Bhandari 《Enzyme》1982,27(2):81-88
Studies were made of the effects of pre- and post-weaning undernutrition and/or protein deficiency on intestinal phytase and phosphatase activities in albino rats and reversibility of the same by subsequent dietary rehabilitation. Neonatal undernutrition induced by rearing the pups in litters of 16 caused a marked decrease in alkaline phytase activity (as compared to those reared in litters of 8), while acid phytase activity decreased to a lesser extent and acid and alkaline phosphatase activities did not change. When neonatally undernourished rats were subsequently continued on a 4 or a 20% protein diet in restricted amounts (2.5 g/day) for 6 weeks the decreases in the alkaline phytase activity but not in that of acid phytase were further aggravated. Acid and alkaline phosphatases were not influenced by these treatments either. On dietary rehabilitation of these rats for subsequent 6 weeks on a 20% protein diet (ad libitum) acid and alkaline phytase activities of intestine recovered partially. These studies indicate the importance of alkaline phytase activity as a marker of intestinal maturation and is also suggestive of interrelationships between nutrition, intestinal development and its alkaline phytase activity.  相似文献   

7.
—The levels of DNA, RNA, protein and activities of acid and alkaline DNases in developing and old chicken brain were studied. A rapid increase in DNA content was found in the embryonic brain until just prior to hatching. Thereafter, with a transient plateau around the day of hatching, the DNA continued to increase but at a very slow rate. Two-year-old brain was found to have a markedly higher level of DNA as compared to the 10th day postnatal value. RNA showed a steady increase up to the 20th day of embryonic life. Protein levels showed a gradual increase throughout the period studied. Both acid and alkaline DNases exhibited maximum activity during embryonic life, i.e. at a time when rapid cellular proliferation was occurring. With advancing age, the acid DNase activity showed a marked decline thus exhibiting no correlation to the high level of DNA found in the old brain. The alkaline DNase activity, however, was still at a significant level in the 2-year-old brain.  相似文献   

8.
Postnatal developmental patterns of activity for acid and alkaline deoxyribonuclease (DNase) were determined in the cerebellum of the androgenized female rat. Littermates were injected s.c. with either 1.25 mg testosterone propionate (TP) or vehicle 48 hours after birth. The enzymes and DNA content were measured in the cerebellum at 3, 6, 10, 15, 18, 22, 35, and 60 days of age. Neonatally administered TP affects neither the activities nor the developmental patterns of the DNases through age 60 days. However, the DNA content was significantly lower in the cerebellum of the TP-treated rats at ages 10 and 15 days. These data demonstrate that the TP-induced alterations in cerebellar DNA content are not mediated by acid or alkaline DNase.  相似文献   

9.
Hydroxyurea, when injected intraperitoneally at a dose of 1 mg/g body weight, inhibited thymidine kinase activity in developing rat cerebrum (16-day-embryonic) and cerebellum (7-day-postnatal) within a few hours of administration. The inhibition was time-dependent and both cytosolic and mitochondrial thymidine kinases were affected. Under the same conditions, the activities of certain other enzymes concerned with DNA metabolism,viz., DNA polymerase, and acid and alkaline DNases were not inhibited. Further, the addition of hydroxyureain vitro had no effect on the activity of any of the enzymes studied. However, similar treatment given to 2-year-old rat failed to exert any inhibition on either the mitochondrial or soluble thymidine kinase activities in grey and white matter regions of cerebrum and cerebellum. It is inferred that hydroxyurea, apart from its already known effect on ribonucleotide reductase of replicating cells, also affects thymidine kinase.  相似文献   

10.
Activities of cytidine 5′-diphosphate-choline glycerol choline phosphotransferase and uridine 5′-diphosphate galactose-ceramide galactosyltransferase were determined in isolated myelin in different brain regions of control, and rats with restricted food intake. Kinetic experiments indicated an increase inK m value of phosphocholinetransferase in brain stem of undernourished rats, without significant change in the specific activity of this enzyme. Stimulation of this myelin bound enzyme activity was also evident in the animals when myelin was treated with the detergent: Tween CF. 54. Though specific activities of galactosyl transferase in myelin of undernourished rats were significantly diminished, theK m of this enzyme was unaltered. These studies point to an adverse effect of early nutritional stress on the activities of enzymes bound to myelin membrane which has hitherto been considered metabolically inert.  相似文献   

11.
The DNase express test system and the SF-bioassay (sea urchin sperm fertilization bioassay) were used to assess the quality of sea and bottom sediment water sampled at 8 stations of the Troitsa Bay (Possyet Bay, Sea of Japan). The specific activities of 8 enzymes (alkaline and acid DNases, RNases, phosphatases and phosphodiesterases) were determined for the liver and gill tissues of the mussel Crenomytilus grayanus sampled at the same stations. The activities of all enzymes were higher in the liver than in the gills, and the activity of acid nucleases in both tissues was significantly higher than that of alkaline nucleases. The specific activities of some nucleases in the mussel tissues correlated to the level of seawater pollution. The activities of acid RNases and phosphodiesterases decreased in both tissues upon an increase in water pollution, up to 1.5–3 times in the gills, while the activities of alkaline and acid phosphatases and phosphodiesterases increased 1.5–4 times. Thus, the specific activities of acid RNases, phosphatases and phosphodiesterases from mussel liver can be a useful indicator of marine pollution. This approach can be used for biotesting of ocean water and for assessment of the biological condition of invertebrates adapting to various ecological and anthropogenic effects.  相似文献   

12.
Deoxyribonucleases from rat brain   总被引:1,自引:0,他引:1  
Two distinctly different DNases were isolated from rat brain and could be separated easily by ammonium sulphate fractionation. One of the DNases acts optimally at pH 5.0 hydrolysing preferentially native DNA and requiring an optimal Mg2+ concentration of about 0.03 m . The other DNase has its optimal pH between 7.4 and 8.9, acts preferentially on heat-denatured DNA and requires a lower Mg2+ concentration, the optimum being 1 × 10?4m . Cerebellum from adult rat brain has a lower acid DNase activity and higher alkaline DNase activity, and therefore has a higher ratio of alkaline DNase to acid DNase than the other areas of brain studied. This unique activity ratio in cerebellum of adult rat brain was not observed in infant rat brain.  相似文献   

13.
The activities of enzymes involved in lipid metabolism—phospholipase A2 (PLA2) and phosphatidylethanolamine N-methyltransferase (PE N-MTase)—were found to be differently affected by pre-incubation of rod outer segments (ROS) under protein phosphorylating or dephosphorylating conditions. Exposure to cAMP-dependent protein kinase (PKA), under dark or light conditions, produced a significant increase in PE N-MTase activity, whereas PLA2 activity decreased. Under standard protein kinase C (PKC) phosphorylating conditions in light, PE N-MTase activity was stimulated and PLA2 activity was not affected. When the assays were performed in the dark, both enzymatic activities were unaffected when compared to the corresponding controls. Incubation of ROS membranes in light in the presence of PKC activators phorbol 12,13-dibutyrate (PDBu) and dioctanoylglycerol (DOG) resulted in the same pattern of changes in enzyme activities as described for standard PKC phosphorylating condition. Pre-incubation of membranes with the PKC inhibitor H-7 reduced the stimulation of PDBu on PE N-MTase activity, and had no effect on PLA2 activity in ROS membranes incubated with the phorbol ester. Pre-treatment of isolated ROS with alkaline phosphatase resulted in decreased PE N-MTase activity and produced a significant stimulation of PLA2 activity under dark as well as under light conditions when compared to the corresponding controls. These findings suggest that ROS protein phosphorylation and dephosphorylation modulates PE N-MTase and PLA2 activities in isolated ROS, and that these activities are independently and specifically modulated by particular kinases. Furthermore, dephosphorylation of ROS proteins has the opposite effect to that produced by protein phosphorylation on the enzymes studied.  相似文献   

14.
15.
In rats, late prenatal and/or early postnatal zinc deficiency results in behavioural anomalies in adult animals, but not in overt dysmorphogenesis of the central nervous system. Cerebellar and hippocampal development occurs mainly in the first three weeks postnatally and zinc accumulates specifically in the mossy fibres of the hippocampus during this period.In the present investigation, rat pups were suckled by dams fed a zinc-deficient (<0.5 mg/kg) diet either from day 19 of pregnancy or from parturition. Control animals were restricted-fed the same diet supplemented with 100 mg zinc/kg. Studies were performed on pups either on day 18 postpartum in the case of animals fed the experimental diets from parturition, or on day 20 for pups which received treatment from day 19 of gestation.Cerebellar and hippocampal weights were lower in pups suckling from zinc-deficient dams but zinc levels were not affected in either organ, although histological evidence suggested less zinc in the hippocampal mossy fibres. Incorporation of H-thymidine into cerebellar and hippocampal DNA was not affected by maternal zinc status, nor was the activity of the zinc metalloenzyme alkaline phosphatase.The activity of the myelin-marker enzyme 2′, 3′-cyclic nucleotide 3′-phosphohydrolase was substantially lower in both regions of the brain in zinc deprived pups, especially in the hippocampus. Activity of the zinc metalloenzyme L-glutamic acid dehydrogenase was also diminished in both tissues from 20-day-old pups and in the hippocampi of 18-day-old animals.The data suggest that cerebellar and hippocampal DNA synthesis is not seriously affected by late prenatal and/or early postnatal zinc depletion, but that the activities of two enzymes associated with neural function are. The possibility is raised that these defects may be associated with the behavioural changes observed in rats subjected to zinc impoverishment during the period of maximal cerebellar and the hippocampal development.  相似文献   

16.
Developing brains are vulnerable to nutritional insults. Early undernutrition alters their structure and neurochemistry, inducing long-term pathological effects whose causal pathways are not well defined. During suckling, the brain uses glucose and ketone bodies as substrates. Milk is a high-fat low-carbohydrate diet, and the liver must maintain high rates of gluconeogenesis and ketogenesis to address the needs of these substrates. Insulin and glucagon play major roles in this adaptation: throughout suckling, their blood concentrations are low and high, respectively, and the liver maintains low insulin sensitivity and increased glucagon responsiveness. We propose that disturbances in the endocrine profile and available plasma substrates along with undernutrition-related changes in brain cortex capacity for ketone utilization may cause further alterations in some brain functions. We explored this hypothesis in 10-day-old suckling rats whose mothers were severely food restricted from the 14th day of gestation. We measured the plasma/serum concentrations of glucose, ketone body, insulin and glucagon, and hepatic insulin and glucagon responses. Undernutrition led to hypoglycemia and hyperketonemia to 84% (P < 0.001) and 144% (P < 0.001) of control values, respectively. Liver responsiveness to insulin and glucagon became increased and reduced, respectively; intraperitoneal glucagon reduced liver glycogen by 90% (P < 0.01) in control and by 35% (P < 0.05) in restricted. Cortical enzymes of ketone utilization remained unchanged, but their carrier proteins were altered: monocarboxylate transporter (MCT) 1 increased: 73 ± 14, controls; 169 ± 20, undernourished (P < 0.01; densitometric units); MCT2 decreased: 103 ± 3, controls; 37 ± 4, undernourished (P < 0.001; densitometric units). All of these changes, coinciding with the brain growth spurt, may cause some harmful effects associated with early undernutrition.  相似文献   

17.
Abstract: In examining steroid synthesis in the CNS, expression of the mRNAs encoding for cytochrome P450 side-chain cleavage enzyme (P450SCC) and 3β-hydroxysteroid dehydrogenase/Δ54 isomerase (3β-HSD) has been studied in the rat brain. P450SCC transforms cholesterol into pregnenolone and 3β-HSD transforms pregnenolone into progesterone. PCR was used to amplify cDNA sequences from total RNA extracts. Classical steroidogenic tissues, like adrenal and testis, as well as the non-steroidogenic tissue lung have been used as controls. The expression of P450SCC and 3β-HSD have been demonstrated by PCR in cortex, cerebellum, and spinal cord. In addition, primary cultures of rat cerebellar glial cells and rat cerebellar granule cells were found to express P450SCC and 3β-HSD at comparable levels. Furthermore, three of the four known isoenzymes of 3β-HSD were identified, as determined using selective PCR primers coupled with discriminative restriction enzymes and sequencing analysis of the amplified brain products. Using RNA probes, in situ hybridization indicated that P450SCC and 3β-HSD are expressed throughout the brain at a low level and mainly in white matter. Enrichment of glial cell cultures in oligodendrocytes, however, does not increase the relative abundance of P450SCC and 3β-HSD mRNA detected by PCR. This discrepancy suggests that the developmental state of cultured cells and their intercellular environment may be critical for regulating the expression of these enzymes. These findings support the proposal that the brain apparently has the capacity to synthesize progesterone from cholesterol, through pregnenolone, but that the expression of these enzymes appears to be quite low. Furthermore, the identification of these messages in cerebellar granule cell cultures implies that certain neurons, in addition to glial cells, may express these steroidogenic enzymes.  相似文献   

18.
The effect of low protein diet on rat brain AChE activity has been studied during gestation, lactation and postweaning periods. There was decrease in enzyme activity of pups undernourished either during gestation and lactation or lactation alone, the decrease being maximum in 18-day-old pups. In postweaning rats, a significant decrease was observed after 2 and 4 weeks of undernutrition compared to the control. However, the effect of undernutrition was annuled by 2-week rehabilitation, thereby indicating that imposed undernutrition only delays the normal level of the enzyme. Moreover, it appears that the enzyme activity depends both on the nutritional status and the development age.  相似文献   

19.
Extracts of purified HeLa nuclei contain DNase activities which can be separated by CM-Sephadex column chromatography into four distinct enzymes. These DNases differ in their resistance to thermal inactivation and relative activity on different substrates. Each of these DNases can increase the template-primer activity of native DNA for DNA polymerase action.  相似文献   

20.
The newly emerged adult male and female Schizodactylus monstrosus D. were treated with an insecticide, pyrethrum or with petroleum ether in the case of controls. At selected intervals of 6 h, 12 h and 18 h after treatment, the brain and ventral nerve cord and ganglia were homogenized to estimate the activity of acetyl-cholinesterase, and acid and alkaline phosphatase. The resultant activities of these three enzymes showed that: acetylcholinesterase decreased rapidly, and acid and alkaline phosphatase increased significantly after pyrethrum treatment in both brain and ventral nerve cord with ganglia compared with the controls. The activities of alkaline phosphatase showed a marked fluctuation at different post-treatment periods in both the tissues. The results have been discussed in relation to the impact caused by the treated insecticide and its metabolism.  相似文献   

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