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Biomedical subjects

L J Murphy

Publications and source records attributed to L J Murphy.

At least 37 records · Page 2Linked to original sources

Relationship between serum leptin and the insulin-like growth factor-I system in humans.

The growth hormone (GH)/insulin-like growth factor-I (IGF-I) system and leptin both play an important role in the regulation of body composition. Although the regulation of these two hormonal systems by insulin has been under intense investigation, the physiologic interactions between leptin and the GH/IGF-I system remain unknown. In this study, we examined the relationships among circulating leptin and key elements of the IGF-I system in 60 subjects (27 nondiabetic lean, 21 nondiabetic obese, and 12 type 1 diabetic subjects) with a wide range of insulin secretory capacity. Leptin, glucose, insulin, free IGF-I, total IGF-I, IGF-binding protein-1 (IGFBP-1), and IGFBP-3 levels were measured in the basal state after an overnight fast, and the acute insulin response to glucose (AIRG) was determined after intravenous glucose injection. AIRG was significantly higher (P < .01) in the obese (3,365+/-562 pmol/L x min) versus lean subjects (1,624+/-155 pmol/L x min). In simple regression analysis, the serum leptin concentration was positively correlated with the body mass index ([BMI] men, r = .51, P = .005; women, r = .71, P < .001), IGFBP-3 (men, r = .20, P = nonsignificant; women, r = .41, P < .025), and AIRG (men, r = .73, P < .001; women, r = .62, P < .01). There was a nonlinear correlation between leptin and IGFBP-1, but there was no correlation between leptin and free or total IGF-I. In multiple regression analysis with leptin as the dependent variable, gender, BMI, and IGFBP-3 entered the equations at a statistically significant level. The correlation of leptin with IGFBP-3 was independent of obesity and persisted after correction for AIRG, suggesting a link between leptin and GH action.

Adult↗

Hepatic regeneration in insulin-like growth factor binding protein-1 transgenic mice.

BACKGROUND/AIMS: Partial hepatectomy results in activation of genes in the residual liver tissue which serve to restore glucose homeostasis and regenerate liver mass. Expression of insulin-like growth factor binding protein-1 (IGFBP-1) is up-regulated following partial hepatectomy and IGFBP-1 can modulate both the metabolic and mitogenic effects of insulin-like growth factor-1 (IGF-I). The aim of the study was to compare the effects of partial hepatectomy on blood glucose levels and hepatic regeneration in wild-type and transgenic mice which constitutively overexpress IGFBP-1. METHODS: Hepatic IGFBP-1 mRNA, blood glucose concentrations, liver mass and hepatic DNA synthesis were compared in sham-operated and partially hepatectomized transgenic and wild-type mice. RESULTS: Hepatic IGFBP-1 mRNA was higher in sham-operated transgenic than wild-type mice, but in both groups of mice, partial hepatectomy was associated with a significant rise in IGFBP-1 mRNA. The absolute decline in blood glucose levels following partial hepatectomy was greater in transgenic mice. Basal DNA synthesis and the response to IGF-I in isolated hepatocytes from both groups of mice were similar, and DNA synthesis in the regenerating liver in vivo was not significantly different in transgenic as compared to wild-type mice: 449.3 +/- 63.9 vs. 321.6 +/- 52.3 cpm/microgram DNA. Hepatic regeneration as measured by liver weight after hepatectomy was not different between transgenic and wild-type mice. CONCLUSIONS: Constitutive overexpression of IGFBP-1 does not enhance hepatic regeneration and does not prevent the decline in blood glucose following partial hepatectomy.

Animals↗

Thyroid gland function and growth in IGF binding protein-1 transgenic mice.

OBJECTIVE: IGF-I, IGF-I receptor and IGF-binding proteins (IGFBPs) are expressed in thyroid tissue and are associated with the function and growth of the thyroid. This study investigated the in vivo and in vitro effects of increased IGFBP-1 levels on the function and growth of the thyroid gland. DESIGN: Transgenic mice which constitutively overexpress IGFBP-1 were used. These mice have a phenotype consistent with partial inhibition of IGF-I action. METHODS: Thyroid growth, morphology and hormonogenesis were determined in transgenic mice treated with goitrogens, sodium perchlorate and methimazole. In vitro cell proliferation in thyroid follicles was assessed in response to IGF-I and TSH. RESULTS: Thyroid weight was increased in transgenic mice, relative to their body mass, whereas serum tri-iodothyronine (T(3)), thyroxine and T(3)-binding capacity were reduced, compared with wild-type. While an inverse relationship between T(3) and TSH was observed in both groups of goitrogen-treated mice, the slope of the line of best fit was less steep in transgenic mice compared with wild-type mice. Thyroid growth was less marked in transgenic than wild-type mice in response to goitrogens, although TSH levels were higher in goitrogen-treated transgenics. In vitro proliferative response of isolated thyroid follicles to IGF-I, but not to TSH, was reduced in transgenic, compared with wild-type mice. CONCLUSIONS: The results of this study suggest that, while overexpression of IGFBP-1 attenuates IGF-I action in vitro, it enhances thyroid growth in vivo, presumably as a result of perturbations in thyroid function at multiple levels.

Aging↗

Enhanced proteolytic activity directed against the N-terminal of IGF-I in diabetic rats.

We have recently identified in serum an acid protease which is capable of generating des(1-3)IGF-I from intact IGF-I. Here we have utilized a synthetic substrate with the sequence, biotin-G-P-E-T-L-C-BSA which contains the N-terminal sequence of IGF-I, to investigate the levels of this protease activity in streptozotocin-diabetic rats. Protease activity, quantified in terms of the amount of the biotin label lost, was determined in serum and hepatic extracts from normal control rats, diabetic rats and insulin-treated diabetic rats. Both the serum protease activity and protease activity in hepatic extracts were significantly increased in diabetic rats compared with control rats (P<0.02 and P<0.005). Following acute administration of insulin, a rapid and marked reduction in serum protease activity was observed; with an approximately 50% reduction apparent at 30 min (P<0.001). Chronic insulin treatment of diabetic rats also significantly reduced the serum and hepatic protease activity to the levels seen in control rats. A positive correlation between protease activity and serum glucose level was observed (r=0.58, P<0.005). The abundance of Spi 2.1 mRNA, a serine protease inhibitor, capable of inhibiting the IGF-I protease activity in vitro, was significantly decreased in the liver of diabetic rats and insulin treatment of diabetic rats did not normalize Spi 2.1 mRNA levels. These data suggest that the conversion of IGF-I to the more active des(1-3)IGF-I variant may be enhanced in diabetic animals. Since serum IGF-I levels are reduced in diabetic rats, increased des(1-3)IGF-I-generating protease activity would enhance the functional activity of the circulating IGF-I.

Animals↗

Impaired adipogenesis in insulin-like growth factor binding protein-1 transgenic mice.

Differentiation of precursor cells into mature fat cells is accompanied by enhanced expression of insulin-like growth factor (IGF)-I and is stimulated by multiple hormones including growth hormone, glucocorticoids, IGF-I and insulin. We used transgenic mice that overexpress insulin-like growth factor binding protein-1 to investigate the role of IGF-I in the accumulation of fat tissue. In response to a sucrose-enriched diet, transgenic mice gained significantly less body weight and the epididymal fat mass was significantly reduced compared with wild-type mice. The increase in adipocyte size was also significantly reduced in transgenic mice compared with wild-type mice. Fewer colonies were generated from adipose tissue from transgenic mice and the mitogenic response of these cells to IGF-I was significantly reduced compared with those from wild-type mice. Induction of glycerol-3-phosphate dehydrogenase, a measure of adipocyte differentiation, by IGF-I but not insulin, was reduced in preadipocytes from transgenic mice. These data indicate that IGF-I has a critical role in the proliferation of adipocyte precursors, the differentiation of preadipocytes and the development of obesity in response to calorie excess.

Adipocytes↗

Isolation and characterization of the mouse beta 2/neuroD gene promoter.

Beta2/neuroD is a basic helix-loop-helix protein involved in differentiation of the endocrine pancreas and the central nervous system. A 2-kb fragment containing the 5' upstream region of the mouse beta2/neuroD gene was cloned and sequenced. The cloned fragment was tested for promoter activity in six cell lines. Strong promoter activity was apparent in the three pancreatic beta cell lines, beta-HC3, beta-HC9, and NIT-1, whereas weak activity was seen in NIH 3T3, Rat-1, and MCF-7 cell lines. Analysis of promoter activity of deletion mutants in beta-HC3 cells indicated that while basal promoter activity was observed with a fragment which extended -109 bp upstream of the transcription start site, maximal activity required the fragment -2091 to -297 bp.

Animals↗

Estrogen receptor-beta mRNA variants in human and murine tissues.

Estrogen receptor (ER)-beta mRNA splice variants have been identified in human breast tumors as well as normal human and mouse ovarian, uterine and mammary tissues. In both species transcripts deleted in exons 5 or 6, or 5 + 6 have been characterized by RT-PCR followed by cloning and sequencing. In mouse tissues an ER-beta transcript containing 54 nucleotides inserted in frame between exons 5 and 6 was identified. Interestingly, no equivalent of the mouse inserted transcript was detected in any of the four human tissues analyzed.

Amino Acid Sequence↗

Self- and informant-ratings on the patient competency rating scale in patients with traumatic brain injury.

The Patient Competency Rating Scale (PCRS) provides self- and informant-ratings of everyday memory and gives a guide to patients' awareness of their difficulties. Research using the PCRS has focussed on groups with severe TBI and little is known about ratings of functioning in other severity groups or in a non-TBI population. In the current study the TBI group (n = 53) overrated their pre-accident competency compared to controls (n = 131). Patients with severe TBI (n = 25) underestimated their difficulties, while ratings of those with moderate (n = 14) and mild (n = 14) TBI were consistent with their informants, that is, in areas of cognition and emotion. Controls reported difficulty in interpersonal functioning and emotional control that their informants were unaware of.

Activities of Daily Living↗

A Schwann cell mitogen accompanying regeneration of motor neurons.

Motor neurons are the only adult mammalian neurons of the central nervous system to regenerate following injury. This ability is dependent on the environment of the peripheral nerve and an intrinsic capacity of motor neurons for regrowth. We report here the identification, using a technique known as messenger RNA differential display, of an extracellular signalling molecule, previously described as the pancreatic secreted protein Reg-2, that is expressed solely in regenerating and developing rat motor and sensory neurons. Axon-stimulated Schwann cell proliferation is necessary for successful regeneration, and we show that Reg-2 is a potent Schwann cell mitogen in vitro. In vivo, Reg-2 protein is transported along regrowing axons and inhibition of Reg-2 signalling significantly retards the regeneration of Reg-2-containing axons. During development, Reg-2 production by motor and sensory neurons is regulated by contact with peripheral targets. Strong candidates for peripheral factors regulating Reg-2 production are cytokines of the LIF/CNTF family, because Reg-2 is not expressed in developing motor or sensory neurons of mice carrying a targeted disruption of the LIF receptor gene, a common component of the receptor complexes for all of the LIF/CNTF family.

Animals↗

Impaired brain development and reduced astrocyte response to injury in transgenic mice expressing IGF binding protein-1.

Numerous reports indicate that insulin-like growth factor-I (IGF-I) has a critical role in brain development, that it contributes to neuronal survival and that its activity is regulated by a family of IGF binding proteins (IGFBPs). In the present study, brain development was investigated in transgenic (Tg) mice that overexpress rat IGFBP-1 under the control of phosphoglycerate kinase promoter. Adult Tg mice had significantly decreased brain weight (299 +/- 17 vs. 499 +/- 11 mg), brain DNA content (684 +/- 8 vs. 810 +/- 31 microg) and brain protein (37 +/- 1 vs. 48 +/- 2 mg) compared with wild-type (Wt) mice and these deficits were already evident at birth. In Tg mice, myelin staining was generally reduced and there was a diminished thickness of the corpus callosum. The total area of hippocampus and dentate gyrus were significantly reduced by 55% and 72%, respectively. Bromodeoxyuridine labeling of proliferating cells in 3-day-old mice was markedly reduced by 41% in the dentate gyrus and by 19% in ventricular zones of Tg mice. Reactive astrogliosis reflected by morphology and glial fibrillary acidic protein expression of astrocytes in response to a mechanical lesion was substantially less in Tg compared with Wt mice. Mixed glial cell cultures from Tg animals were significantly less responsive to stimulation of proliferation by IGF-I than cultures from Wt mice. We conclude that overexpression of IGFBP-1 impairs brain development and reduces glial cell proliferation in response to injury.

Animals↗

Reduced fecundity in insulin-like growth factor-binding protein-1 transgenic mice.

Transgenic mice that overexpress insulin-like growth factor-binding protein-1 (IGFBP-1) demonstrate a reduced litter size compared to nontransgenic, wild-type mice derived from the same genetic background. To determine the mechanism underlying this phenomenon, we examined the number of ovulatory follicles per cycle in naturally mated transgenic and wild-type mice by counting the corpora lutea and the blastocysts harvested by uterine flushing. In addition, we investigated the effects of insulin-like growth factor-I (IGF-I) on blastocyst DNA synthesis and examined the effects of a transgenic maternal environment on fetal outcome by cross transfer of blastocysts. Significantly fewer corpora lutea were observed in ovaries from transgenic vs. wild-type mice (7.6 +/- 1.8 vs. 11.8 +/- 1.5), and fewer blastocysts were harvested from transgenic mice compared to wild-type mice (7.6 +/- 2.3 vs. 10.1 +/- 2.0). DNA content and basal DNA synthesis were similar in blastocysts from nontransgenic and transgenic mice. However, unlike wild-type blastocysts, transgenic blastocysts did not respond to IGF-I with an increase in DNA synthesis. To determine the effects of maternal environment on fetal outcome, a mixture of equal numbers of transgenic and nontransgenic blastocysts was transferred into foster mothers. The ratio of transgenic to nontransgenic pups was not significantly different from the theoretically predicted value of 1. However, the litter size was significantly reduced in wild-type compared to transgenic foster mothers. These data suggest that the reduced fecundity is due to reduced ovulation and blastocyst number. Furthermore, expression of the transgene in neither the blastocyst nor the maternal tissues had any significant negative effect on implantation or fetal wastage.

Animals↗

The growth hormone dependent serine protease inhibitor, Spi 2.1 inhibits the des (1-3) insulin-like growth factor-I generating protease.

The conversion of insulin-like growth factor-I (IGF-I) to the biologically more active des (1-3) IGF-I variant is catalyzed by a ubiquitous protease. This proteolytic activity is inhibited by human alpha1-antitrypsin and soy-bean trypsin inhibitor and is up-regulated in serum and tissue extracts of hypophysectomized rats. These observations lead us to investigate whether the growth hormone regulated, serine protease inhibitor, Spi 2.1 was able to inhibit the des (1-3) IGF-I generating protease. Dihydrofolate reductase deficient Chinese hamster ovary (CHO(dhfr-ve)) cells were transfected with a rat Spi 2.1 expression vector containing the dhfr and neomycin resistance gene. Stable transfectants were selected using G418 and amplified using methotrexate. Conditioned medium from Spi 2.1 transfected CHO cells potently inhibited proteolytic activity directed against a synthetic hexa-peptide with a sequence identical to the N-terminal of IGF-I. In contrast conditioned medium from wild-type CHO cells had little effect. Based upon these observations we suggest that our previous finding of enhanced des (1-3) IGF-I generating protease activity in growth hormone deficient rats may be, at least partly explained by reduced levels of Spi 2.1. Furthermore, we propose that the regulation of the generation of des (1-3) IGF-I may be an additional potential site of growth hormone regulation of IGF-I action.

Animals↗

Free insulin-like growth factor I (IGF-I) in healthy subjects: relationship with IGF-binding proteins and insulin sensitivity.

The majority of insulin-like growth factor I (IGF-I) circulates in blood bound to a family of IGF-binding proteins (IGFBPs). Only a small fraction of IGF-I is unbound or free, and one of the postulated roles of the IGFBPs is regulation of this free component, thereby increasing IGF-I bioavailability. Whether free IGF-I plays a physiological role in glucose homeostasis, however, is not clear. In this study, we examined the effects of acute changes in serum insulin on free IGF-I, total IGF-I, IGFBP-1, and IGFBP-3 in 11 healthy subjects. Glucose (0.3 g/kg) and insulin (0.05 U/kg) were injected iv at 0 and 20 min, respectively. Blood samples were drawn at defined intervals for 3 h, and insulin sensitivity (SI) was computed by Bergman's minimal model. Serum insulin reached a first peak after glucose injection and a second, higher peak after exogenous insulin administration. Although the total IGF-I level remained constant for the duration of the experiment, free IGF-I decreased by 20% 20 min after the first insulin peak and by 35% 20 min after the second peak. IGFBP-1 first declined to 20% below basal, then rose to 3-fold the basal level. IGFBP-3 increased linearly to 20% above basal by the end of the experiment, and this increase mirrored the decline of free IGF-I. In the fasting state, free IGF-I was positively correlated with SI (r = 0.52; P < 0.005) and inversely correlated with glucose (r = -0.51; P < 0.005) and IGFBP-1 (r = -0.65; P < 0.001). In conclusion, free IGF-I is acutely regulated by insulin and correlates with SI, suggesting that it may play a physiological role in glucose homeostasis.

Adult↗

Expression of insulin-like growth factor binding proteins (IGFBPs) in IGFBP-1 transgenic mice.

The hepatic and renal expressions of the insulin-like growth factor binding proteins (IGFBPs) were examined in transgenic (Tg) mice which overexpress a rat IGFBP-1 transgene driven by the phosphoglycerate kinase-1 promoter. There were no significant difference in the abundance of serum IGFBPs in Tg and wild-type (Wt) mice. Although total hepatic IGFBP-1 mRNA mouse and transgene-derived) levels were similar in Tg mice to the levels of mouse IGFBP-1 mRNA in Wt mice on day 1 of life, in Tg mice only approximately 30% of the IGFBP-1 mRNA was derived from transcription of the mouse gene. An age-related decline in hepatic IGFBP-1 mRNA levels was apparent in both Tg and Wt mice. Food deprivation resulted in increased levels of mouse IGFBP-1 mRNA but the total IGFBP-1 mRNA levels were not significantly different in Tg and Wt mice. In the kidney, unlike the liver, IGFBP-1 mRNA levels in Tg mice were markedly elevated compared with Wt mice and no significant decline was seen with age. Northern blots of hepatic and renal RNA demonstrated similar levels of IGFBP-3, -4, -5 and -6 mRNAs in Tg and Wt mice. From these data we can conclude that in the liver expression of the transgene leads to a coordinated reduction in mouse IGFBP-1 mRNA levels.

Aging↗

Islet cell proliferation and apoptosis in insulin-like growth factor binding protein-1 in transgenic mice.

Transgenic mice which overexpress insulin-like growth factor binding protein-1 (IGFPB-1) demonstrate fasting hyperglycemia, hyperinsulinemia and glucose intolerance in adult life. Here we have examined the ontogeny of pancreatic endocrine dysfunction and investigated islet cell proliferation and apoptosis in this mouse model. In addition we have examined pancreatic insulin content in transgenic mice derived from blastocyst transfer into non-transgenic mice. Transgenic mice were normoglycemic at birth but had markedly elevated plasma insulin levels, 56.2 +/- 4.5 versus 25.4 +/- 1.5 pmol/l, p < 0.001, and pancreatic insulin concentration, 60.5 +/- 2.5 versus 49.0 +/- 2.6 ng/mg of tissue, P < 0.01, compared with wild-type mice. Transgenic mice derived from blastocyst transfer to wild-type foster mothers had an elevated pancreatic insulin content similar to that seen in pups from transgenic mice. There was an age-related decline in pancreatic insulin content and plasma insulin levels and an increase in fasting blood glucose concentrations, such that adult transgenic mice had significantly less pancreatic insulin than wild-type mice. Pancreatic islet number and the size of mature islets were increased in transgenic animals at birth compared with wild-type mice. Both islet cell proliferation, measured by 5-bromo-2'-deoxyuridine labeling, and apoptosis, assessed by the in situ terminal deoxynucleotidyl transferase and nick translation assay, were increased in islets of newborn transgenic mice compared with wild-type mice. In adult mice both islet cell proliferation and apoptosis were low and similar in transgenic and wild-type mice. Islets remained significantly larger and more numerous in adult transgenic mice despite a reduction in pancreatic insulin content. These data suggest that overexpression of IGFBP-1, either directly or indirectly via local or systemic mechanisms, has a positive trophic effect on islet development.

Animals↗

Impaired glucose homeostasis in insulin-like growth factor binding protein-1 transgenic mice.

Transgenic mice that overexpressed IGFBP-1 are hyperinsulinemic in the first week of life and gradually develop fasting hyperglycemia. In adult transgenic mice, the hypoglycemic response to IGF-I but not insulin or des (1-3) IGF-I was attenuated (P < 0.05) compared with wild-type mice. Furthermore, in isolated adipocytes from transgenic mice, the stimulatory effect of IGF-I but not insulin on 2-deoxy-[3H]-glucose uptake was reduced (P < 0.02). In contrast, in isolated soleus muscle, the effects of both IGF-I and insulin on 2-deoxy-3H-glucose uptake and on [3H]-glucose incorporation into glycogen were significantly reduced compared to wild-type mice. The decline in specific activity of the 2-deoxy-3H-glucose, a measure of glucose appearance in the circulation, was more marked in transgenic animals (P < 0.05). In addition, tissue uptake of glucose was significantly higher in diaphragm, heart, intestine, liver, soleus muscle, and adipose tissue from fasting transgenic mice. Plasma concentrations of alanine, lysine, and methionine were also elevated in transgenic mice. These data suggest that overexpression of IGFBP-1 attenuates the hypoglycemic effect of endogenous IGF-I, which is initially compensated for by enhanced pancreatic insulin production. However, in adult mice pancreatic insulin content is reduced, insulin resistance is demonstrable in skeletal muscle and fasting hyperglycemia develops.

Animals↗

Molecular pharmacology of endothelin converting enzymes.

A critical processing step in endothelin biosynthesis is the conversion of the intermediate "big endothelin" to its biologically active product catalysed by endothelin converting enzyme (ECE). In this commentary we discuss critically the cellular location, structure, and activity of the isoforms of ECE. The current evidence supporting a metallopeptidase ECE as the physiological regulator of endothelin production is described. Its sensitivity to inhibition by the fungal metabolite phosphoramidon and subsequent cloning of the enzyme indicate it to be a type II integral membrane protein homologous with neural endopeptidase-24.11 (E-24.11), the major neuropeptide-degrading ectoenzyme in brain and other tissues. Unlike E-24.11, however, ECE exists as a disulphide-linked dimer of subunit M(r) 120-130 kDa and is not inhibited by other E-24.11 inhibitors such as thiorphan. Alternative splicing produces two forms of ECE with distinct N-terminal tails. These isoforms of ECE-1 show similar specificity converting big endothelin-1 (ET-1) to ET-1 but big ET-2 and big ET-3 are converted much less efficiently. This suggests that additional forms of ECE remain to be isolated. Immunocytochemical studies indicate a predominant cell-surface location for ECE-1, like E-24.11. This is consistent with the conversion of exogenous big ET-1 when administered in vivo and the inhibition of this event by phosphoramidon. However, mature ET-1 can be detected in intracellular vesicles in endothelial cells, suggesting that some processing occurs in the constitutive secretory pathway. This may be mediated by ECE-2, a recently cloned member of the E-24.11/ECE family which has an acidic pH optimum. Selective inhibitors of ECE may have therapeutic applications in cardiovascular and renal medicine.

Amino Acid Sequence↗