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Biomedical subjects

S J Lin

Publications and source records attributed to S J Lin.

At least 127 records · Page 7Linked to original sources

The role of the Saccharomyces cerevisiae CCC1 gene in the homeostasis of manganese ions.

We previously reported that oxidative damage in yeast lacking copper/zinc superoxide dismutase (SOD1) can be alleviated through mutations in PMR1, encoding a calcium P-type ATPase homologue that also functions in manganese homeostasis. In an attempt to further understand the relationship between manganese ions, PMR1 and SOD1, we conducted a search for manganese homeostasis genes that interact with PMR1. A genomic library was screened for genes that, when overexpressed, suppress the manganese hypersensitivity associated with pmr1 mutations. A single clone was isolated that reduced manganese toxicity in both the pmr1 mutant and PMR1 wild-type yeast. This gene was identified as CCC1, previously shown to function in calcium metabolism. Our studies indicate that, like PMR1, CCC1 functions in the homeostasis of both calcium and manganese ions. The Ccc1p polypeptide was found to localize to a Golgi-like organelle in yeast cells. Ccc1p co-fractionated with a Golgi marker in subcellular fractionation studies and, with immunofluorescence microscopy, Ccc1p exhibited a punctate pattern of staining typical of yeast Golgi. Our studies suggest that Ccc1p may act to sequester manganese ions in this organelle and limit the intracellular availability of the metal. First, overexpression of CCC1 reduced manganese cytotoxicity without lowering total accumulation of the metal. Second, overexpression of CCC1 appeared to limit the intracellular availability of the manganese ions needed to support aerobic growth of SOD1 mutants. We provide a model in which Ccc1p and Pmr1p work together to control the intracellular partitioning of manganese ions.

Calcium-Transporting ATPases↗

Suppression of oxidative damage by Saccharomyces cerevisiae ATX2, which encodes a manganese-trafficking protein that localizes to Golgi-like vesicles.

Oxygen toxicity in Saccharomyces cerevisiae lacking the copper/zinc superoxide dismutase (SOD1) can be suppressed by overexpression of the S. cerevisiae ATX2 gene. Multiple copies of ATX2 were found to reverse the aerobic auxotrophies of sod1(delta) mutants for lysine and methionine and also to enhance the resistance of these yeast strains to paraquat and atmospheric levels of oxygen. ATX2 encodes a novel 34.4-kDa polypeptide with a number of potential membrane-spanning domains. Our studies indicate that Atx2p localizes to the membrane of a vesicular compartment in yeast cells reminiscent of the Golgi apparatus. With indirect immunofluorescence microscopy, Atx2p exhibited a punctate pattern of staining typical of the Golgi apparatus, and upon subcellular fractionation, Atx2p colocalized with a biochemical marker for the yeast Golgi apparatus. We demonstrate here that this vesicle protein normally functions in the homeostasis of manganese ions and that this role in metal metabolism is necessary for the ATX1 suppression of SOD1 deficiency. First, overexpression of ATX2 caused cells to accumulate increased levels of manganese. Second, a deletion in ATX2 caused a decrease in the apparent available level of intracellular manganese and caused sod1(delta) mutants to become dependent upon exogenous manganese for aerobic growth. Third, ATX2 was incapable of suppressing oxidative damage in cells depleted of manganese ions or lacking the plasma membrane transporter for manganese. The effect of ATX2 overexpression on manganese accumulation and oxygen resistance is similar to what we have previously reported for mutations in PMR1, which encodes a manganese-trafficking protein that also resides in a vesicular compartment. Our studies are consistent with a model in which Atx2p and Pmr1p work in opposite directions to control manganese homeostasis.

Aerobiosis↗

I-cell disease: report of a case.

I-cell disease, or mucolipidosis type II (ML II), resembles Hurler syndrome but without the mucopolysacchariduria. I-cell disease is a slowly progressive disorder with onset at birth and fatal outcome in childhood. The neonate with I-cell disease usually has a low birth weight. Unlike Hurler syndrome, there is no temporary acceleration of skeletal growth around one year of age. Instead, clinical characteristics included coarse face and skin, skeletal abnormalities, gum hypertrophy, and severe psychomotor retardation. Head size is proportional to stature. Psychomotor retardation is extreme in some patients but rather mild in others. The most frequent causes of death are bronchopneumonia and congestive heart failure. We report a 9 month-old male infant with characteristic clinical features of I-cell disease. Cytoplasmic inclusions were observed in cultured skin fibroblasts. Ultrastructural study of normal looking skin revealed numerous cytoplasmic inclusions with pleomorphic contents in the fibroblasts and Schwann cells. The diagnosis was confirmed by lysosomal enzyme assay in serum and fibroblasts.

Clinical Enzyme Tests↗

Expression of P53 protein and it's prognostic significance in breast cancer patients.

Nuclear accumulation of p53 protein is associated with a poor clinical outcome in breast cancer patients. This study was designed to determine the frequency of p53 protein immunoreactivity in primary breast cancer to correlate the presence of p53 protein with established risk factors including the estrogen receptor and progesterone receptor status, and to evaluate the prognostic significance of p53 protein immunoreactivity regarding patient survival in Taiwan. To assess the p53 protein immunoreactivity, 104 patients with breast cancer were examined using immunohistochemical methods. P53 protein was detected in 40 (38.5%) of these primary breast cancer specimens. Highly significant associations were found between p53 protein expression and negative steroid receptors, histologic grade III. There were no statistically significant references in p53 protein expression with respect to age, tumor size, lymph node status, or clinical stage. Patients with p53 positive tumor showed poorer survival but this did not achieve significance. However, there were more patients with poor survival in the axillary node-positive group (p < 0.05) than in node-negative group. This suggests that the p53 protein expression is marginal as a prognostic indicator in breast cancer with axillary-node metastasis.

Adult↗

Role of endothelial cell mitosis in transendothelial transport of low density lipoprotein in hypercholesterolemic and normal rabbits.

BACKGROUND: Atherosclerosis is characterized by focal areas of lipid accumulation and intimal smooth muscle cell proliferation in large arteries. It has been suggested that the permeability of arterial endothelium to lipid is an important factor in the initiation and progression of atherosclerosis. The mechanism by which macromolecules such as low density lipoprotein (LDL) enter the arterial wall, however, is still not completely understood. Our previous studies have demonstrated that there is close association of endothelial cell turnover with transendothelial macromolecular transport in normal rat aorta. Because hypercholesterolemia has been well documented as one of the major risk factors for atherosclerosis, we explore the relationship between endothelial cell mitosis and transendothelial transport of LDL in hypercholesterolemic rabbits. METHODS: The present study is designed to perform on thoracic aortae from 30 male New Zealand white rabbits fed with either 1% cholesterol-enriched diet (HC group; n = 15) or normal diet (NC group; n = 15). The concentrations of serum cholesterol and triglycerides from two groups were measured by enzymatic procedures using commercial kits. The aortae of hypercholesterolemic and normocholesterolemic rabbits underwent perfusion-fixation 10 min following the intravenous injection of low density lipoprotein conjugated with Lucifer yellow (LY-LDL) for fluorescence microscopy. En face preparations of the thoracic aortae stained with hematoxylin allowed the identification of ECs in mitosis. The relationship between LY-LDL leakage and endothelial cell mitosis was determined. RESULTS: Although endothelial cell mitosis is infrequent (NC: 0.0022 +/- 0.0007%; HC: 0.0004 +/- 0.0001%) in the thoracic aorta of New Zealand white rabbits, 68.2 +/- 8.4% (NC) or 74.3 +/- 9.0% (HC) of dividing cells in the M phase were associated with LYLDL leakage. These dividing cells accounted for 65.0 +/- 9.2% (NC) or 64.4 +/- 11.3% (HC) of all LY-LDL leaky spots. CONCLUSIONS: Thus, this study not only confirmed the close association of EC mitosis with macromolecular permeability in normal group, but also demonstrated that the same relationship existed in hypercholesterolemic rabbits. These observations lend support to the theory that transiently open junctions surrounding the endothelial cells undergoing cell turnover provide pathways through which LDL enters the subendothelial space, resulting in lipid accumulation and atherosclerosis.

Animals↗

Effects of hyperlipidemia on aortic endothelial cell turnover and transendothelial macromolecular transport in cholesterol-fed rats.

BACKGROUND: Hyperlipidemia, hypertension, cigarette smoking and diabetes are some major risk factors for atherosclerosis and cardiovascular disease. Repeated endothelial injury and enhanced focal intimal influx of plasma lipoproteins are the pivotal mechanisms involved in atherogenesis. We previously demonstrated that the endothelial cell turnover and associated endothelial permeability were significantly increased in the aorta of spontaneously hypertensive rats, chronic oral nicotine-treated rats, and streptozotocin-diabetic rats. In the present investigation, we examined the effects of hyperlipidemia on arterial endothelial cell turnover and transendothelial macromolecular transport in cholesterol-fed rats. METHODS: Sixteen male Sprague-Dawley rats were fed a diet containing 5% cholesterol for 6 weeks. A group of 14 agematched rats fed a regular diet and maintained over the same time period, were served as the controls. In en face preparations of the thoracic aorta, mitotic endothelial cells were identified by hematoxylin staining, IgG-containing dead endothelial cells were identified by an indirect immunoperoxidase method, and endothelial leakage to Evans blue-albumin complexes was quantified by fluorescence microscopy. RESULTS: The results showed that plasma cholesterol and triglyceride levels were higher in cholesterol-fed rats. The hyperlipidemic rats, compared to control rats, had higher values for the frequency of endothelial cell death (1.08 +/- 0.28% vs 0.75 +/- 0.16%), the frequency of endothelial cell mitosis (0.015 +/- 0.005% vs 0.013 +/- 0.003%) and the number density of Evans blue-albumin leaky foci (6.19 +/- 0.64/mm2 vs 5.23 +/- 0.76/mm2) in the aorta. CONCLUSIONS: Similar to the situations in hypertension, nicotine consumption and diabetes, the observed trend of increases in the frequency of endothelial cell turnover and endothelial permeability to large molecules in the aorta of cholesterol-fed rats suggested that these changes may contribute to accelerated atherogenesis in hyperlipidemia. However, since rat is not a favored animal model for studies of dietinduced hyperlipidemia and atherosclerosis, further investigations using other animal models such as rabbit, are needed to verify these observations.

Animals↗

Risk factors, endothelial cell turnover and lipid transport in atherogenesis.

Cardiovascular diseases remain to be the 4th rank of top ten causes of mortality in Taiwan in recent years. Atherosclerosis and coronary artery disease, which often culminating in the occurrence of myocardial infarction and congestive heart failure, are responsible for the majority of these death. One of the prominent features of atherosclerotic lesion is local accumulation of lipids, mainly in the forms of cholesteryl ester and free cholesterol, either within cells or extracellularly in matrix. Repeated endothelial injury and enhanced lipid infiltration are critical events in the development of atherosclerosis. Plasma lipoproteins may enter the arterial wall through endothelium, either transcellularly via vesicular transport or paracellularly via intercellular junction. Our previous studies have demonstrated that most of the arterial endothelial cells in mitosis are associated with the leakage of fluorescently labeled albumin and low density lipoproteins. Subsequently, such transendothelial leakage of macromolecules is also shown to be associated with endothelial cell death as assessed by immunocytochemical staining for IgG. These findings suggested that transiently leaky junctions occurring during endothelial cell turnover may provide potentially important pathways for increasing transport or leakage of macromolecules, including atherogenic LDL, across the vascular endothelium. Electron microscopic study using horseradish peroxidase as a tracer revealed markedly widening of intercellular junctions around endothelial cells in mitosis providing direct evidence in support of "cell turnover-leaky junction" theory for the localization of atherogenesis. Hypertension, smoking, diabetes, and hyperlipidemia are well-known major risk factors for atherosclerosis and coronary heart disease. In a series of investigations, we examined the hypothesis that hypertension smoking, diabetes, and hyperlipidemia increase the arterial endothelial cell turnover and hence transendothelial macromolecular transport, which may have some implications in increasing lipid entry and thus, accelerating atherogenesis. Animal experiments were performed in adult male spontaneously hypertensive rats (SHR), Wistar-Kyoto (WKY) normotensive rats, and Sprague-Dawley (SD) rats. SHRs were used as hypertensive group with WKY rats as normotensive control. SD rats were given nicotine at a dose of 5 mg/Kg body wt/ day in their drinking water to mimic smoking effect over a period of 6 weeks. Diabetes was induced in SD rats by single intraperitoneal injection of 60 mg/Kg body wt of streptozotocin. The duration of diabetes was 6 weeks. Also, SD rats were fed a diet containing 5% cholesterol for 6 weeks to induce hyperlipidemia. Age-matched rats of comparable number served as control for each experimental group. In en face preparations of thoracic aorta, mitotic endothelial cells were identified by hematoxylin staining, immunoglobulin G-containing dying or dead endothelial cells were detected by an indirect immunoperoxidase method, and endothelial leakage to Evans blue-albumin (EBA) complexes (5 minutes after intravenous injection) was visualized and quantified by fluorescence microscopy. The results showed that SHR, chronic oral nicotine-treated rats, diabetic, rats, and hyperlipidemic rats, when compared to control rats, had higher values for the frequency of endothelial cell death and the number density of EBA leaky foci in the aorta. These findings suggested that hypertension, cigarette smoking, diabetes mellitus, and hyperlipidemia become risk factors in atherogenesis by increasing the rate of arterial endothelial cell turnover and the associated endothelial cell turnover and the to the consequent enhanced entry of atherogenic lipoproteins into the arterial wall and accelerated atherogenesis.

Animals↗

A physiological role for Saccharomyces cerevisiae copper/zinc superoxide dismutase in copper buffering.

The copper toxicity of yeast lacking the CUP1 metallothionein is suppressed by overexpression of the CRS4 gene. We now demonstrate that CRS4 is equivalent to SOD1, encoding copper/zinc superoxide dismutase (SOD). While overexpression of SOD1 enhanced copper resistance, a deletion of SOD1, but not SOD2 (encoding manganese SOD), conferred an increased sensitivity toward copper. This role of SOD1 in copper buffering appears unrelated to its superoxide scavenging activity, since the enzyme protected against copper toxicity in anaerobic as well as aerobic conditions. The distinct roles of SOD1 in copper and oxygen radical homeostasis could also be separated genetically: the pmr1, bsd2, and ATX1 genes that suppress oxygen toxicity in sod1 mutants failed to suppress the copper sensitivity of these cells. The Saccharomyces cerevisiae SOD1 gene is transcriptionally induced by copper and the ACE1 transactivator, and we demonstrate here that this induction of SOD1 promotes protection against copper toxicity but is not needed for the SOD1-protection against oxygen free radicals. Collectively, these findings indicate that copper/zinc SOD functions in the homeostasis of copper via mechanisms distinct from superoxide scavenging.

Copper↗

Relation between diurnal variation of blood pressure and left ventricular mass in a Chinese population.

In western populations, patients with hypertension who have a nocturnal decrease in blood pressure (BP) may have less left ventricular (LV) hypertrophy and cardiovascular morbidity than those without a diurnal variation in BP. To further examine this association between nocturnal BP reduction and LV mass index, we studied 720 normotensives (< 140/90 mm Hg), 380 borderline hypertensives (140 to 159/90 to 94 mm Hg), and 582 hypertensives (> or = 160/95 mm Hg) from Taiwan and Quemoy island by using 24-hour ambulatory BP monitoring and 2-dimensional echocardiography to obtain LV mass index during a community-based cardiovascular survey. After controlling for age, sex, height, weight, daytime BP, and daytime heart rate, the nocturnal reduction of systolic BP was found to associate weakly with LV mass index, for the whole population (partial correlation coefficient = -0.06, p < 0.05), as well as for the patients with hypertension (partial correlation coefficient = -0.09, p < 0.05), but these associations were eliminated when 24-hour BP and heart rate were accounted for. The average and percent nocturnal decrease of systolic BP (mean +/- SD; mm Hg, [%]) of 3.2 +/- 5.9 (2.7 +/- 4.8%); 3.3 +/- 7.3 (2.4 +/- 5.4%); and 4.6 +/- 9.0 (3.0 +/- 6.1%) in normotensives, borderline hypertensives, and hypertensives, respectively, was smaller than that found in previous studies. Hence, in this large Chinese population, a small nocturnal BP drop was found and it was only weakly associated with LV mass index. These results emphasize the general need for ambulatory BP reference values based on internal controls.

Adult↗

The ATX1 gene of Saccharomyces cerevisiae encodes a small metal homeostasis factor that protects cells against reactive oxygen toxicity.

In aerobic organisms, protection against oxidative damage involves the combined action of highly specialized antioxidant enzymes, such as superoxide dismutase (SOD) and catalase. Here we describe the isolation and characterization of another gene in the yeast Saccharomyces cerevisiae that plays a critical role in detoxification of reactive oxygen species. This gene, named ATX1, was originally isolated by its ability to suppress oxygen toxicity in yeast lacking SOD. ATX1 encodes a 8.2-kDa polypeptide exhibiting significant similarity and identity to various bacterial metal transporters. Potential ATX1 homologues were also identified in multicellular eukaryotes, including the plants Arabidopsis thaliana and Oryza sativa and the nematode Caenorhabditis elegans. In yeast cells, ATX1 evidently acts in the transport and/or partitioning of copper, and this role in copper homeostasis appears to be directly relevant to the ATX1 suppression of oxygen toxicity: ATX1 was incapable of compensating for SOD when cells were depleted of exogenous copper. Strains containing a deletion in the chromosomal ATX1 locus were generated. Loss of ATX1 function rendered both mutant and wild-type SOD strains hypersensitive toward paraquat (a generator of superoxide anion) and was also associated with an increased sensitivity toward hydrogen peroxide. Hence, ATX1 protects cells against the toxicity of both superoxide anion and hydrogen peroxide.

Amino Acid Sequence↗

Prenatal diagnosis of recurrence of short rib-polydactyly syndrome.

We describe a nonconsanguineous couple whose 3 successive pregnancies, including one pair of twins, led to the birth of 4 infants with short rib-polydactyly syndrome (SRPS). Flat face, hypoplastic thorax, short limbs and ribs, polydactyly, absence of penis, and death after birth were noted in the first affected male baby. The affected female twins were detected prenatally by ultrasonography and had the same characteristics, but milder than the previous one. Serial measurements of the thoracic circumference and the 4 limbs were obtained by ultrasound, and showed progressively decreased ratio of thoracic to abdominal circumference and shortness of the limbs. The last male baby also had a similar but variable expression in prenatal ultrasonography.

Adult↗

Increased synovial expression of the adhesion molecules CD66a, CD66b, and CD31 in rheumatoid and osteoarthritis.

Leukocyte-endothelial interaction mediated by adhesion molecules may play a role in the ingress of inflammatory cells into the rheumatoid (RA) synovial tissue (ST). A number of these molecules have been shown to be up-regulated in the inflamed compared to normal ST. We studied the distribution of two members of the CD66 carcinoembryonic antigen adhesion molecule family, as well as that of CD31, an antigen structurally related to CD66, on various cell types in the RA compared to osteoarthritic (OA) and normal ST. Immunoperoxidase histochemistry was carried out using monoclonal antibodies to CD66a, CD66b, and CD31. This study was performed on ST from 10 patients with RA, 10 with OA, and 4 normal individuals. CD66a, and CD66b were expressed on RA and OA ST myeloid cells but not on normal ST lining cells and interstitial macrophages, suggesting that these antigens may be specific markers of diseased compared to normal ST macrophages (P < 0.05). CD31 was present on more RA and OA than on normal ST macrophages. Also, CD31 was present on most RA, OA, and normal ST endothelial cells. Our results indicate that the expression of CD66a, CD66b, and CD31, members of the immunoglobulin superfamily of adhesion receptors, is up-regulated on cells of myeloid origin in the inflamed compared to normal ST. These results suggest that the CD66 antigens and CD31 may be involved in the adhesive events in the inflamed synovium.

Antigens, CD↗

Increased synovial expression of transforming growth factor (TGF)-beta receptor endoglin and TGF-beta 1 in rheumatoid arthritis: possible interactions in the pathogenesis of the disease.

The ingress of inflammatory cells into the rheumatoid (RA) synovial tissue (ST) plays a role in the pathogenesis of this disease. Transforming growth factor beta (TGF-beta) may play a role in this process. We have investigated the distribution of endoglin, a newly described receptor for TGF-beta 1 and -beta 3, in RA compared to osteoarthritis (OA) or normal ST. Immunohistochemical analysis was carried out using an anti-TGF-beta 1 monoclonal antibody (mAb) as well as 10 mAbs raised against various epitopes of endoglin. This study was performed on ST from 10 patients with RA, 10 with OA, and 4 normal individuals. TGF-beta 1 expression was significantly up-regulated on RA compared to OA and normal ST lining cells, interstitial macrophages, and endothelial cells (P < 0.05). All anti-endoglin mAbs uniformly reacted with endothelial cells in RA, OA, and normal STs. However, 3 out of 10 anti-endoglin mAbs reacted with significantly more RA versus normal ST lining cells (P < 0.05), as well as RA compared to OA and normal macrophages (P < 0.05). There was a positive correlation between TGF-beta 1 and endoglin reactivity on the synovial lining layer and subsynovial macrophages (P < 0.05). These results indicate that TGF-beta 1 and certain epitopes of endoglin, a TGF-beta 1 and -beta 3 receptor, are up-regulated on myeloid elements in RA compared to normal ST. Endoglin is also present on ST endothelia, and its expression may also be increased on OA compared to normal ST lining cells. These findings implicate endoglin in the pathogenesis of RA.

Antibodies, Monoclonal↗

Leukotriene E4 selectively increase the delivery of methotrexate to the C6 gliomas in rats.

Leukotriene E4 (LTE4) infused into the carotid artery ipsilateral to an experimental glial tumor will selectively increase the blood-tumor permeability within the tumor. In this study the effects of intracarotid infusion of LTE4 on blood-tumor barrier (BTB) permeability for intravenously administered 14C-aminoisobutyric acid, 14C-5-fluorouracil (5-FU) 14C-sucrose and 3H-methotrexate (MTX) were examined in C6 gliomas of rats. The intracarotic administration of LTE4 selectively opened the BTB, without affecting permeability of normal brain tissue, to all of the above tracers. Intracarotid infusion of LTE4 had the tendency to increase the uptake of intravenously administered 5-FU within the tumor, but this effect was not statistically significant. The intracarotid infusion of LTE4, however, increased the uptake of intravenously injected MTX about twofolds within the tumor (Ki = 19.48 +/- 1.06 vs 10.12 +/- 1.19, p < 0.01) without increasing the uptake in the normal brain tissue.

Animals↗

Immersion in bovine insulin stimulates growth of tilapia.

The objective of this study was to investigate the effects of bovine insulin on growth responses in tilapia. Juvenile hybrid male tilapia (Oreochromis niloticus x O aurea; n = 135) were subjected to 1 of 3 treatments. Each treatment was subdivided into 3 replicates of 15 fish each. The fish were immersed into 1 of 2 doses (10 and 100 micrograms/100 ml water) of insulin or no hormone for 15 min per week for 8 weeks. Body weight, growth and feed conversion efficiency were significantly higher as a result of the first 4 weeks of insulin treatment as compared to control fish. The lower dose of insulin had a better stimulation effect than that of the higher doses. Insulin also stimulated feed consumption. Liver protein and protein/DNA ratio were higher in both insulin-treated groups than in the control group. Muscle proximate composition and hepatosomatic index were similar in the insulin-treated and control groups. The experimental findings suggest that insulin administered by immersion can enhance growth, feed consumption, food utilization and liver cell size in tilapia.

Animal Nutritional Physiological Phenomena↗

Different effects of fosinopril and atenolol on wave reflections in hypertensive patients.

We conducted this study to compare the effects of fosinopril versus atenolol on peripheral blood pressure, central arterial wave reflection, and left ventricular mass in a group of patients with essential hypertension. We conducted a double-blind, randomized trial of fosinopril and atenolol in 79 hypertensive patients (52 men, 27 women; mean age, 45.8 +/- 8.5 years; range, 30 to 68 years). Carotid pressure waveforms were recorded noninvasively by applanation tonometry with a Millar micromanometer-tipped probe. The extent of wave reflection was estimated by the augmentation index defined as the ratio of the amplitude of pressure wave above its systolic shoulder to the pulse pressure. The augmentation index, left ventricular mass index by two-dimensional echocardiography, and 24-hour ambulatory blood pressures were determined before and after 8 weeks of daily treatment with fosinopril (10 to 20 mg) or atenolol (50 to 100 mg) with or without diuretics and compared with those values in 79 normotensive control subjects. After 8 weeks of treatment, both drugs lowered 24-hour ambulatory peripheral systolic and diastolic pressures into the normal range to a similar extent (fosinopril, -18/-13 mm Hg; atenolol, -23/-17 mm Hg, both P = NS). On the other hand, whereas the elevated augmentation index in hypertensive patients compared with normotensive subjects (16 +/- 11% versus 10 +/- 8%) was completely normalized by fosinopril (-9.3 +/- 9.8%, P < or = .002), it was lowered by atenolol (-4.8 +/- 8.9%, P < .002) but to a significantly smaller extent (fosinopril versus atenolol effect, P = .04).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Application of natural and amplification-created restriction sites in prenatal and preimplantation diagnosis of beta-thalassemia.

We attempted the strategy of natural and amplification-created restriction sites for early prenatal and preimplantation diagnosis of Chinese beta-thalassemia. Mutagenesis primers were designed for 11 mutations reported for the Chinese population. The diagnosis was established after polymerase chain reaction and digestion of products by specific enzymes. The results were confirmed by direct sequencing of enzymatically amplified double-stranded DNA. The beta-globin gene was amplified from triploid embryos and isolated blastomeres using mismatched primers. The mutant and normal alleles can be distinguished clearly by this new method. Early prenatal diagnosis was successfully achieved in 9 cases. The beta-globin gene was successfully amplified from single blastomeres and tripronuclear embryos with mismatched primers. Natural and amplification-created restriction sites are a reliable method for rapid prenatal diagnosis of beta-thalassemia. Furthermore, the strategy provides a possible approach for the preimplantation diagnosis of beta-thalassemia.

Base Sequence↗

Population genetic study of selected tetranucleotide repeat DNA polymorphisms on chromosomes Y and 12.

Microsatellite polymorphisms of 75 unrelated Taiwanese males were analyzed for (GATA) repeats in DYS19 on chromosome Y and tetranucleotide simple repeats in D12S67 on chromosome 12. A simple nonisotopic technique based on polymerase chain reaction electrophoresis on native polyacrylamide gels followed by silver staining was used. In the 75 unrelated males, four alleles on DYS19 and five alleles on D12S67 were detected. Different allele frequencies, heterozygosity rates and information on the nature of the repeat loci were determined in these unrelated individuals. The resulting polymorphisms are of great assistance in ethnologic studies, forensic investigation and deficiency cases in paternity testing.

Base Sequence↗