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Biomedical subjects

C C Liew

Publications and source records attributed to C C Liew.

At least 127 records · Page 7Linked to original sources

Analysis of sarcoplasmic reticulum proteins in patients susceptible to malignant hyperthermia.

It has been suspected that the cause of malignant hyperthermia (MH) is an abnormality in the sarcoplasmic reticulum of skeletal muscle. We isolated the sarcoplasmic reticulum from malignant hyperthermia-susceptible (MHS) patients and controls and analysed the protein composition with sodium dodecyl sulfate polyacrylamide gel electrophoresis. There were no remarkable changes in the sarcoplasmic reticulum protein composition profile of the scanned gel of the patients. Quantitative measurement of the relative proportion of each band in the gel, however, revealed a slight decrease in calsequestrin and a slight increase in protein of molecular weight 23,000. (Ca2+ -Mg2+)ATPase had no altered subfragments in MHS patients. Crude mitochondrial proteins and myoplasmic proteins showed minor alterations in composition in some patients. The data supported the thesis that malignant hyperthermia is due to defects in several different cell membranes including the sarcoplasmic reticulum and the mitochondria.

Disease Susceptibility↗

Nonenzymatic separation of myocardial cell nuclei from whole heart tissue.

A simple and rapid nonenzymatic method has been developed to isolate myocardial cell nuclei from whole heart tissue. This method consists of a controlled disruption of cells followed by isopycnic gradient centrifugation. We have reviewed and compared our method to others more lengthy and laborious. By using a number of criteria, such as morphometric measurements, chemical composition, functional studies, specific nuclear protein markers, and mathematical analysis, we show that the nonenzymatic digestion method provides a most useful technique for the study of the biochemistry of the myocardial cell nucleus.

Aging↗

Production of antibody to phosphoprotein associated with nucleosome structure.

Antibodies were produced to phosphoprotein fraction, and a phosphoprotein B2 obtained by carboxyl methyl cellulose column chromatography and sodium dodecyl sulfate (SDS) - polyacrylamide gel electrophoresis as described previously (Biochem. J. 183, 147 (1979)). Production of the specific antibody was confirmed by double immunodiffusion. The phosphoprotein B2 (relative mass 68 000), which was isolated from the phosphoprotein fraction by SDS-polyacrylamide gel electrophoresis, specifically reacted with the antisera, as identified by "rocket" immunoelectrophoresis. Further characterization of the antibody to the phosphoprotein was carried out by isoelectrofocusing gel electrophoresis. The phosphoprotein, previously identified in the isoelectric point (pI) region 6.2--8.5, was subsequently reacted with antisera and 125I-labelled protein A. A prominent radioactive peak was identified in the region in which the phosphoprotein was focused. The radioimmunoactivity was proportional to the amount of phosphoproteins present in the isoelectric focusing gel. The presence of phosphoprotein antibody. The relationship between the phosphoprotein and chromatin structure, and possible role in gene regulation is discussed.

Animals↗

Analysis of non-histone chromatin proteins in porcine malignant hyperthermia.

Non-histone chromatin proteins (NHCP) were isolated from skeletal muscle, left ventricle and liver of swine susceptible to malignant hyperthermia and from controls. These proteins were extracted with phenol buffers and fractionated by polyacrylamide gel electrophoresis. Isoelectrofocusing gel electrophoresis revealed quantitative differences in NHCP from skeletal muscle between disease and control groups. The high resolution of proteins by two-dimensional polyacrylamide gel electrophoresis showed a relative similarity between skeletal muscle, heart and liver although some differences could be discerned. Non-histone chromatin proteins of molecular weight 35,000-45,000, focusing between pH7 and 9, were increased in skeletal muscle nuclei derived from malignant hyperthermia-susceptible swine. These proteins appear to be important in the maturation of messenger RNA. No alterations were seen in either heart or liver. We conclude that an increase in NHCP which is associated with the processing of messenger RNA, may be important in the phenotypic expression in skeletal muscle of malignant hyperthermia in swine.

Animals↗

Fractionation of rat ventricular nuclei.

Myocardial cells were isolated after treatment with collagenase (0.05%) and hyaluronidase (0.1%) by discontinuous-gradient centrifugation on 3% Ficoll. Nuclei derived from these myocardial cells were then fractionated on a discontinuous sucrose density gradient with the following steps: (I) 2.0M/2.3M, (II) 2.3M/2.4M, (III) 2.4M/2.5M, (IV) 2.5M/2.6M, and (V) 2.6M/2.85M. The myocardial nuclei were sedimented in the interfaces of gradient fractions (II) and (III). Nuclei from whole ventricles that had been treated with the enzymes before isolation sedimented into five major subsets of nuclei. These findings suggest that nuclei sedimented in the isopycnic gradient at fractions (II) and (III) are most probably derived from myocardial cells. However, this procedure is laborious and lengthy, and the recovery of myocardial-cell nuclei is low. An alternative method was developed to isolate an enriched fraction of myocardial-cell nuclei from whole ventricular tissue without exposing the tissues to enzyme digestion. These ventricular nuclei could be fractionated into five nuclear subsets by using the same discontinuous sucrose density gradient as that described above. The content of DNA, RNA and protein per nucleus for each band was determined. Although the DNA content per nucleus was constant (10pg), that of RNA varied from 1.5 to 4.5pg and that of protein from 16 to 24pg. Nuclei from each band were examined by light-microscopy: large nuclei occurred in the ligher regions whereas smaller nuclei were found in the denser regions of the gradient. From the size distribution pattern of myocardial-cell nuclei compared with that of total ventricular nuclei, it was found that nuclear subsets (II), (III), and (IV) were similar to myocardial nuclei. Electrophoretic analyses of the proteins solubilized in sodium dodecyl sulphate/phenol or Tris/EDTA/2-mercaptoethanol/phenol obtained from each nuclear subset indicate that these fractions are similar, with limited qualitative differences. These findings indicate that isolation of an enriched fraction of myocardial-cell nuclei could be achieved by discontinuous-sucrose-density-gradient centrifugation.

Animals↗

Histone acetylation in differentiating chick myoblast cultures.

Histone acetyltransferase activity in cell extracts from chick myoblast cultures increases up to 24h of cell culture and then decreases steadily to about 30-40% of the 24h value after 6 to 7 days. The decrease in specific activity is independent of the initial cell density. Histone acetylation in intact cells has also been studied by tritiated-acetate labelling. Most of the radioactivity is found in histones H2b, H3 and H4 when separated on acid-urea gels, and is not prevented by puromycin.

Acetylation↗

Electrophoretic profiles of nonhistone nuclear proteins of human hearts with muscular subaortic stenosis.

Muscular subaortic stenosis (MSS) is a genetically determined cardiomyopathy, whereas right ventricular infundibular hypertrophy (IH) apparently is an acquired condition. Since genetic expression in eukaryotic cells may be regulated primarily by DNA-associated proteins, we isolated and characterized the proteins of heart nuclei from nine patients with MSS, eight with IH, and two with normal (N) hearts. More than 150 proteins could be identified by two-dimensional polyacrylamide gel electrophoresis. Proteins in the entire region from pH 7.0 to 9.0 with molecular weights (Mr) ranging from 35,000 to 41,000 and a protein focusing from pH 5.2 to 5.3 with Mr of 55,000 were strikingly reduced in MSS. Again the electrophoretic patterns of N and IH were similar. The electrophoretic patterns of nonhistone nuclear protein (NHNP) in MSS relative to N showed a striking resemblance to those demonstrated previously for the early stage (myolytic phase) of hamster cardiomyopathy relative to the matched control. Since NHNP interacting with DNA appears to play a major role in genetic expression, it is possible that some of the manifestations of MSS could be due to different components of NHNP in the affected hearts.

Animals↗

Purification of a phosphoprotein from chromatin of rat liver.

A simple and effective method to purify a phosphoprotein (B2) (Mr 68,000, pI 6.2-8) from phenol-soluble non-histone chromatin proteins of rat liver is described. The purification involved only two steps, CM-cellulose chromatography and preparative SDS/polyacrylamide (10%)-gel electrophoresis. The purified phosphoprotein B2 was shown to be homogeneous by SDS/polyacrylamide-gel electrophoresis. The yield was 2% of total non-histone chromatin proteins. The acidic to basic amino acid ratio of phosphoprotein B2 was less than 1, with high contents of glutamic acid, aspartic acid, arginine, lysine, glycine and alanine. The phosphate content of this protein is 0.3%.

Amino Acids↗

Studies of nuclear proteins in the skeletal muscle of the cardiomyopathic Syrian hamster.

Nonhistone nuclear proteins (NHNP) were isolated from the skeletal muscle of dystrophic hamsters and their respective paired controls. These proteins were extracted with phenol and fractionated by polyacrylamide gel electrophoresis. One-dimensional gel electrophoresis using either sodium-dodecylsulfate or isoelectrofocusing revealed quantitative changes between the two groups. An improved resolution using a two-dimensional system showed both quantitative and very limited qualitative differences. There are differences in proteins focusing at pH 5.0, molecular weight 55,000, in the dystrophic tissue. In addition proteins from dystrophic muscle focusing between pH 5.0 and 7.0, molecular weight 45,000, and proteins focusing between pH 7.0 and 9.0, molecular weights 35,000--45,000 and 60,000--70,000 were reduced as compared to the controls. There were no detectable differences in the electrophoretic patterns between the two groups of proteins derived from skeletal muscle homogenates. The differences in NHNP appear to be reflections of alterations in the nuclear composition of the dystrophic muscle cell. Some of these differences may represent changes secondary to the muscle disease. However, if NHNP interacting with DNA play a major role in the control of genetic expression, some of the manifestations of hamster dystrophy could be due to a different constitution of NHNP in the skeletal muscle.

Animals↗

Hereditary and acquired cardiomyopathies in experimental animals: mechanical, biochemical, and structural features.

Evidence has been presented regarding alterations of contractile behavior muscle biochemistry, and ulstrastructure during the course of the hereditary hamster cardiomyopathy. Also, preliminary structural and mechanical data were presented on the acquired cardiomyopathy of diabetes mellitus in experimental animals. In the hamster model, contractile performance, measured as isometric tension and rate of tension development, was shown to be depressed throughout the course of the disease, whereas normalized force-velocity relationships returned to normal only during the compensated stages of hypertrophy. Force-frequency relationships were depressed in myopathic muscles, indicating the presence of alterations in the muscle activation system, namely, the biochemical and functional integrity of the sarcoplasmic reticulum. Analysis of the contractile proteins in myopathic muscle has revealed depressions of Ca2+ activity in purified myosin in addition to an independently increased neutral protease activity that results in the specific degradation of LC2 of myosin. Sympathetic time and norepinephrine turnover increase progressively during the course of the disease. These changes are accompanied by decreasing tissue levels of neorepinephrine and increasing levels of dopamine, indicating a shift in the rate-limiting step for norepinephrine synthesis. Alterations were also noted in nuclear protein composition and serotonin levels. Microscopically, the myolytic and calcification changes that characterize the hamster cardiomyopathy have been confirmed. In addition, contraction bands and lysosomal changes have been observed that may relate to cateholamine hypersensitivity. In the experimental model of diabetic cardiomyopathy, a significant alteration in relaxation process was demonstrated despite the fact that peak tension development and its rate of development were unaltered. Also, the length dependence of contractile behavior was altered when compared to that of age-matched controls, indicating a potential loss of contractility reserve. When animals with combined hypertension and diabetes were studied, bothe contraction and relaxation processes were affected to a greater degree.

Actomyosin↗

Characterization of proteins associated with nuclear ribonucleoprotein particles by two-dimensional polyacrylamide gel electrophoresis.

Rat liver nuclear ribonucleoprotein particles were prepared by two different methods and defined as 40S ribonucleoprotein (40S RNP) and heterogeneous nuclear ribonucleoprotein (HnRNP) particles. The RNP particles were either solubilized in 8 M urea--6 mM 2-mercaptoethanol--20 mM glycine--20 mM Tris--HCl (pH 8.4) or subjected to removal of RNA by phenol extraction prior to solubilizing the proteins in the urea buffer. The proteins associated with 40S RNP and HnRNP were heterogeneous and very similar in their electrophoretic patterns when analyzed by two-dimensional PAGE, except a protein with molecular weight of 62 000 and an isoelectric point (pI) of 6.2 was present only in HnRNP particles. At least 12 major and 22 minor components could be identified in both preparations. The major proteins were found at pI values varying from 6.0 to 8.5 and with molecular weights from 32 000 to 42 000, and a group of proteins with molecular weight approximately 65 000 were more prominent in HnRNP than in 40S RNP. The other components were found mainly at pI ranges from 5.0 to 6.5 with molecular weights from 43 000 to 65 000. The phenol method extracted essentially all proteins associated with either 40S RNP and HnRNP, but was less effective in extracting a group of proteins with pI values from 5.0 to 5.5 and more efficient for proteins with pI values from 7.5 to 8.5. When chromatin proteins isolated by phenol extraction were compared with HnRNP particle proteins isolated by the same method, the electrophoretic mobilities of the HnRNP particle proteins were found to be identical with a fraction nonhistone chromatin proteins. The 40S RNP particles were further purified by metrizamide isopycnic density gradient centrifugation. The electrophoretic patterns of these proteins were very similar to those prepared by sucrose density gradient centrifugation. Therefore, we concluded that the proteins of RNP particles constituted part of the chromatin proteins.

Animals↗

Effect of thyrotropin on the phosphorylation of thyroid chromosomal proteins.

Thyrotropin (TSH) stimulated the phosphorylation of histone H1 in calf thyroid slices but had no effect on other classes of histones. Phosphorylation of total phenol-soluble nonhistone chromosomal proteins was not affected by incubation with TSH. However, when these phenol-soluble nonhistone chromosomal proteins were analysed by two-dimensional gels involving isoelectrofocusing and dodecyl sulfate-polyacrylamide gel electrophoresis, TSH was shown to stimulate the phosphorylation of two specific groups of phosphoproteins with molecular weights between 35,000 and 45,000 and isoelectric points at pH values of 5.4-6.0. This increase in phosphorylation with TSH stimulation was confirmed by quantitative analysis of one-dimensional isoelectrofocusing gels.

Animals↗

Identification of nonhistone chromatin proteins in chromatin subunits (or mononucleosomes) devoid of histone H1.

Rat liver chromatin was digested by micrococcal nuclease. Chromatin subunits (or mononucleosomes) were isolated by sucrose density gradient and subsequently fractionated by 6% polyacrylamide gel electrophoresis into two major components. One component (MN1) of the mononucleosomes had a higher mobility, contained histones H2A, H2B, H3, H4, and shorter DNA fragments (140 base pairs) while the other (MN2) contained all five histones and longer DNA fragments (180 base pairs). Both submononucleosomes (MN1 and MN2) were found to contain nonhistone chromatin proteins (NHCP). By electrophoresis in 15% sodium dodecyl sulfate-polyacrylamide gel, 9 and 11 major fractions of NHCP were identified in the submononucleosomes MN1 and MN2, respectively. It was also observed that treatment of mononucleosomes with 0.6 M NaCl removes most of these NHCP and histone H1 except for two major NHCP which remain in the core particles.

Animals↗