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Biomedical subjects

A Lustig

Publications and source records attributed to A Lustig.

At least 91 records · Page 5Linked to original sources

Purification and characterization of yeast anthranilate phosphoribosyltransferase.

Anthranilate phosphoribosyltransferase from Saccharomyces cerevisiae has been purified to homogeneity from an overproducing strain. Analytical ultracentrifugation demonstrated that the enzyme is a dimer of Mr = 83,000 +/- 4,000 (S20.w = 4.7 S). Moreover, as shown by active enzyme sedimentation, the enzyme remains dimeric even at low concentrations. The presence of yeast phosphoribosylanthranilate isomerase in the gradient does not lead to complex formation between the two enzymes as might be expected if phosphoribosyl anthranilate, the very labile product of the anthranilate phosphoribosyltransferase, were channelled to phosphoribosylanthranilate isomerase in vivo. The steady-state-kinetic behaviour of the enzyme suggests that catalysis involves a ternary enzyme-substrate complex, with KANTm = 1.6 microM, and KPRib-PPm = 22.4 microM. The enzyme has been used to generate phosphoribosylanthranilate in situ for kinetic studies of phosphoribosylanthranilate isomerase from Escherichia coli: KPRAm = 5 microM, kcat = 40 s-1.

Aldose-Ketose Isomerases↗

Porin from Thiobacillus versutus.

The porin of Thiobacillus versutus IFO 14567 was isolated by extraction of cell-envelopes with sodium dodecyl sulfate. It exhibited strong porin-activity after reconstitution into artificial lipid bilayer membranes. The diameter of the pore was determined as 1.6 nm, with a weak selectivity for cations being observed. The porin migrated as a single band (Mr 35 kDa) on SDS-polyacrylamide gel-electrophoresis after heating (100 degrees C, 5 min). The porin oligomer was not sensitive towards EDTA. Analytical ultracentrifugation studies demonstrated the native oligomer to be a trimer.

Bacterial Outer Membrane Proteins↗

Variability of peritoneal clearances for apolipoprotein and its relationship to susceptibility for atherosclerotic changes in CAPD.

Apolipoprotein Clearance and Atherogenicity in CAPD: Protein and lipoprotein loss is one of the disadvantages of CAPD. The impact of these losses on serum constituents is not fully understood. Lipoprotein disorders are observed in patients with chronic or acute renal failure or undergoing dialytic therapy with resultant increase in atherosclerotic clinical events yet these phenomenon are poorly understood, underinvestigated and underreported. Thus the impact of dietary and pharmacological steps to prevent these events are limited by lack of clinical facts. The recent emergence of effective lipid lowering agents makes a rapid analysis of parameters important. We studied the relationships between peritoneal clearance of apolipoproteins and serum atherogenicity indicators in a preliminary study of 10 CAPD patients with and without peritonitis. We measured total cholesterol (TC), HDL-Cholesterol (HDL-C), Apo A-I and Apo B and dialysate levels of Apo A-I and Apo B. Apo levels were determined immunotubidimetrically, and dialysate was concentrated by ultrafiltration. A subsequent prospective group of 10 additional patients was studied to test the relationship found in the preliminary study. In both preliminary and prospective nonperitonitis groups, the ratio of peritoneal clearance of Apo A-I to Apo B correlated strongly with the serum TC/HDL-C (r = 0.9 preliminary, r = 0.78 prospective group). There was an inverse correlation between the clearance ratio and both serum HDL-C (r = -0.71 preliminary, r = -0.77 prospective group) and serum Apo A-I/Apo B (r = -0.74 preliminary, r = -0.62 prospective group).(ABSTRACT TRUNCATED AT 250 WORDS)

Apolipoprotein A-I↗

Native mitochondrial creatine kinase forms octameric structures. II. Characterization of dimers and octamers by ultracentrifugation, direct mass measurements by scanning transmission electron microscopy, and image analysis of single mitochondrial creatine kinase octamers.

Electron micrographs of negatively stained and metal-shadowed mitochondrial creatine kinase (Mi-CK) molecules purified as described by Schlegel et al. (Schlegel, J., Zurbriggen, B., Wegmann, E., Wyss, M., Eppenberger, H. M., and Wallimann, T. (1988) J. Biol Chem. 263, 16942-16953) revealed a homogeneous population (greater than or equal to 95%) of distinctly sized square-shaped, octameric particles with a side length of 10 nm that frequently exhibited a pronounced 4-fold axis of symmetry. The cube-like molecules consist of four dimers that are arranged around a stain-accumulating central cavity of 2.5-3 nm in diameter. This interpretation is supported by single particle averaging including correlation analysis by computer. Upon prolonged storage or high dilution, the cube-like octamers tended to dissociate into "banana-shaped" dimers. Sedimentation velocity and sedimentation equilibrium experiments yielded an s value of 12.8-13.5 S and an Mr of 328,000 +/- 25,000 for the octameric cubes. An s value of 5.0 S and a Mr of 83,000 +/- 8,000 was found under conditions which revealed banana-shaped dimers. These dimers proved to be very stable, as their dissociation into monomers of 45 kDa (s value = 2.0 S) required 6 M guanidine HCl. Thus, the oligomeric structures observed in the electron microscope are identified as Mi-CK dimers (banana-shaped structures) and cubical Mi-CK octamers assembled from four Mi-CK dimers. The octameric nature of native Mi-CK and the formation of Mi-CK dimers were confirmed by direct mass measurements of individual molecules by scanning transmission electron microscopy yielding a molecular mass of 340 +/- 55 kDa for the octamer and 89 +/- 27 kDa for the dimer. A structural model of Mi-CK octamers and the possible interaction with ATP/ADP-translocator molecules as well as with the outer mitochondrial membrane is proposed. The implications with respect to the physiological function of Mi-CK as an energy-channeling molecule at the producing side of the phosphoryl creatine shuttle are discussed.

Animals↗

Widespread distribution of the c-src gene product in nerve cells and axon terminals in the adult rat brain.

The regional and cellular distribution of the proto-oncogene product pp60c-src, a member of the family of membrane-associated tyrosine-specific protein kinases, was analysed in adult rat brain. High-resolution SDS-PAGE allowed analysis of both the 'fibroblast' 60-kDa form and a variant, 61-kDa neuron-specific form of the c-src gene product which is encoded by an alternately processed c-src mRNA. Studies of microdissected brain regions showed that all CNS regions contained both forms of the enzyme, the 61-kDa form predominating in most regions with high content of gray matter and high density of synapses. Lesion-induced degenerations of specific neuronal elements in the basal ganglia decreased the level of both forms of the c-src gene product both in regions where cell bodies had been lesioned and in regions where nerve terminals had degenerated. The 61-kDa form of the enzyme appeared somewhat more sensitive to the effects caused by these lesions than the 60-kDa form. These results indicate that, within the mature mammalian brain, both cell body regions and nerve terminals of many, and possibly all, nerve cells contain both forms of the c-src gene product, the 61-kDa form being most highly enriched in the nerve cells. These results suggest that the enzyme may be involved in pleiotropic functions, including signal transduction in nerve terminals.

Animals↗

Quaternary structure of ornithine aminotransferase in solution and preliminary crystallographic data.

Ornithine aminotransferase was purified from rat liver and crystallized in the presence of ammonium sulphate and poly(ethylene glycol) (PEG 4000). The crystallographic threefold symmetry observed for the resulting two crystal forms stimulated a re-examination of the enzyme's quaternary structure in solution by analytical ultracentrifugation and chemical cross-linking. The results indicate that the oligomeric state or ornithine aminotransferase, under conditions similar to those used in crystallization experiments, is a hexamer (Mr = 256,000) rather than a tetramer or higher oligomers as reported previously. The subunits of the enzyme are identical (Mr = 45,000). Only the hexagonal prismatic crystals obtained with PEG 4000 were suitable for crystallographic studies and diffracted X-rays to a resolution of at least 0.16 nm. However, these crystals contained an unusual element of disorder which was persistent under a variety of conditions and was only noticeably diminished in the presence of the non-ionic detergent octyl beta-glucoside. The crystals apparently belong to the trigonal space group P3(1)12 (or enantiomorph) with axial lengths of a = 19.5 nm, c = 5.9 nm and contain three monomers per asymmetric unit.

Cross-Linking Reagents↗

Changes in the pattern of expression of pp60c-src in cerebellar mutants of mice.

Cultures of neurons from rat embryos have been shown previously to express high levels of a unique form of pp60c-src [Brugge et al (1985): Nature 316:524-526], the cellular homologue of the transforming protein of Rous sarcoma virus. This altered form of pp60c-src, designated pp60c-src(+), displays a retarded electrophoretic mobility due to a structural alteration within the aminoterminal region of the molecule [Brugge et al, 1985]. In order to investigate the distribution and possible role of pp60c-src(+) in intact brain, we have examined the expression of pp60c-src(+) in extracts from developing cerebella from wild-type mice and mutant mice that display progressive degeneration of specific classes of cerebellar neurons. The loss of pp60c-src(+) generally correlated with the loss of granule cells and Purkinje cells from the cerebella of mice carrying the staggerer (sg/sg) and Lurcher (Lc/+) mutations, with the most pronounced changes observed in cerebella from the more severely affected sg/sg mice. The expression of pp60c-src(+) in weaver wv/wv mice is qualitatively and quantitatively quite different. From the earliest time points, there was a significant reduction in the levels of pp60c-src(+), with no further loss of this form during the period of maximal neuronal differentiation. This suggests an early, predegenerative absence of pp60c-src(+) in this mutant strain, which is defective in granule-cell migration.

Animals↗

Characterization of the altered form of the c-src gene product in neuronal cells.

The pp60c-src protein that is expressed at high levels in cultures of neurons from rat embryos displays an altered mobility on SDS-polyacrylamide gels due to a structural difference in the amino-terminal region of the molecule. In this report we show that the expression of this unique form of pp60c-src, designated pp60c-src(+), is not restricted to cultured neuronal cells since the pp60c-src molecules expressed in tissues from avian and rat neural tissues also display a retarded electrophoretic mobility. The amino-terminal region from pp60c-src(+) was found to contain a novel phosphorylated tryptic peptide that contains phosphoserine. However, this phosphorylation does not appear to be responsible for the retarded electrophoretic mobility of pp60c-src(+), since the mobility of this protein is not altered by phosphatase treatment under conditions that remove greater than 95% of the radiolabeled phosphate on pp60c-src(+). The altered electrophoretic form of pp60c-src was also shown to be radiolabeled with [3H]myristate, indicating that pp60c-src is fatty-acylated in neurons, as is pp60c-src in fibroblasts. The pp60c-src molecules synthesized in vitro using rabbit reticulocyte lysates programmed with mRNA from embryonic brain migrated more slowly on SDS-polyacrylamide gels than the pp60c-src protein that was translated in vitro using RNA from embryonic limb tissue. These results suggest the possibility that the c-src mRNA expressed in neurons may undergo a unique form of processing to generate the structurally distinct form of neuronal pp60c-src(+).

Animals↗

Characterization of dimer subunits of intermediate filament proteins.

The fundamental subunit of the various types of intermediate-sized filaments (IF) has been shown to be a tetramer that is thought to represent a double dimer, i.e. an array of two laterally packed coiled-coils of alpha-helices. The two-chain state of intact IF proteins had up to this point not been isolated and characterized as has been done for other fibrous alpha-helical coiled-coil proteins. Using buffers containing 3 M-guanidinium hydrochloride we prepared dimers by depolymerization of IF or by reconstitution from fully denatured molecules. Dimers of desmin (from chicken gizzard), vimentin (from bovine lens tissue and cultured human fibroblasts) and the neurofilament protein NF-L (from bovine brain) as well as in vitro formed homodimers of human and rat cytokeratins numbers 8 (A), 18 (D) and 19 ("40K"), are characterized by ultracentrifugation techniques (sedimentation velocity and equilibrium), electron microscopy and chemical cross-linking. The results show that IF proteins from discrete complexes of two polypeptide chains in parallel orientation and probably in coiled-coil configuration, which apparently have a high tendency to further associate into double dimers. Implications of these results for concepts of IF organization and IF protein assembly are discussed.

Animals↗

Investigations of the expression of the cellular src gene product.

We have examined the expression of the c-src gene product in a variety of embryonic and adult tissues, in peripheral blood cells, and in cells transformed by other tumor viruses, in an attempt to identify the types of cells in which pp60c-src might provide a specific function. These studies have indicated that c-src gene expression is regulated at multiple levels in different cell types and have suggested that pp60c-src is not exclusively involved in the regulation of cell proliferation. The lowest levels of pp60c-src were found in fibroblasts, which have previously served as the standard cell type for comparisons between pp60c-src and pp60v-src. The highest levels of pp60c-src-specific kinase activity were detected in three types of cells: neurons, platelets, and polyoma virus transformed cells. In this report, we will compare the expression of pp60c-src in fibroblasts to that in platelets, neurons, and polyoma virus transformed fibroblasts. In each of the three latter cell types, the c-src gene product displays a unique pattern of expression which can be distinguished from that in fibroblasts (see diagram Fig. 1).

Animals↗

Structure and interactions of heparan sulfate proteoglycans from a mouse tumor basement membrane.

Various forms of heparan sulfate proteoglycan were solubilized from the mouse Engelbreth-Holm-Swarm (EHS) sarcoma by extraction with 0.5 M NaCl, collagenase digestion and extraction with 4 M guanidine. They could be separated into high (greater than or equal to 1.65 g/ml) and low (1.38 g/ml) buoyant density variants. The high-density form from the NaCl extract and collagenase digest had Mr = 130000 and So20,W = 4.5 S and contained 4-10% protein, indicating Mr = 5 000-12 000 for the protein core. This proteoglycan exhibited polydispersity as shown by rotary shadowing electron microscopy and ultracentrifugation. An average molecule consisted of four heparan sulfate chains (Mr = 29 000) each with a length of 32 +/- 10 nm. The low-density form (Mr about 400 000) could not be completely purified and contained about 50% protein. As shown by radioimmunoassay, the various proteoglycans shared similar protein cores. Labeling of the tumor in vivo or in vitro demonstrated preferential incorporation of radioactive sulfate in the high-density form. The high-density proteoglycan interacted in affinity chromatography by virtue of its heparan sulfate chains with laminin, fibronectin, the globular domain NC1 and the triple helix of collagen IV. These interactions were abolished at moderate concentrations of NaCl (0.1-0.2 M) and in the presence of heparin, chondroitin sulfate or dextran sulfate. Interactions with the globule NC1 could also be demonstrated by velocity band centrifugation in sucrose gradients and a binding constant of about 10(6) M-1 was derived.

Animals↗

HLA antigens in White and Black South African diabetics.

The HLA A and B specificities in 72 Whites with type 1 or juvenile-onset diabetes mellitus (JOD), 53 Blacks with type 1 diabetes or JOD and 52 Blacks with type II or maturity-onset diabetes (MOD) were determined and compared with those in 278 Whites and 311 Blacks who were not diabetic. In Whites with JOD, frequencies of HLA A1 and B8 antigens were significantly increased, whereas those of the A3 and B17 antigens were reduced. Blacks with JOD had an increased frequency of HLA B8. By contrast, in Blacks with MOD the antigen frequencies were not significantly altered. The D-locus antigens Dw3 (DRw3) and Dw4 (DRw4), which bear the strongest associations with JOD in Whites, need to be examined in Black South African diabetics.

Adult↗

Does the lactose carrier of Escherichia coli function as a monomer?

The purified lactose carrier of Escherichia coli (product of the lac Y gene) is shown to be a monomer in detergent micelles of dodecyl-O-beta-D-maltoside. The negative-dominant phenotype of mutant carriers (lacY-d mutants) could not be verified by measurements of the rate of galactoside transport in lacY+/Y-d diploid strains. It is proposed that the membrane-embedded carrier functions as a monomer in galactoside-H+ symport.

Biological Transport↗

Shape and stability of fibronectin in solutions of different pH and ionic strength.

At low ionic strength (0.05 M) the sedimentation coefficient of monomeric plasma fibronectin was found to vary from 8S, at pH 3 and 11, to 13.5S at neutral pH. The lower s20,w value indicates a stretched arrangement of the value indicates a stretched arrangement of the two arms of the molecule which was observed in most electron microscopic studies. The higher value is consistent with a still very asymmetric but more condensed shape, which is probably brought about by back-folding and interactions between chain segments of different net charge. A model of this internal association is based on the finding that segments of rather different isoelectric points alternate along the fibronectin chains. A similar pH dependence was observed for a 140-kDa fragment from the middle region of fibronectin which carries segments of low and high isoelectric points at its ends. At high ionic strength (0.35 M) the pH dependence of the sedimentation coefficients was less pronounced and intermediate s20,w values were found. This is expected when both repulsive and attractive interactions are weakened by the electrolyte. It was verified by circular dichroism spectra that the protein was not denatured at pH 3 or 11. Thermal transition curves revealed a destabilization at pH 3 but the thermal denaturation occurred well above 20 degrees C at which the pH dependence of the solution shape was studied.

Drug Stability↗

Solubilized cytochrome c oxidase from Paracoccus denitrificans is a monomer.

Cytochrome c oxidase purified from the bacterium Paracoccus denitrificans was analyzed by analytical ultracentrifugation. In the detergent octyltetra/pentaoxyethylene (C8E45), the isolated enzyme exhibits a molecular weight of 79,000 to 84,000. The detergent-solubilized enzyme is thus a monomer which contains one copy of each of the two subunits.

Detergents↗

The biogenesis and regulation of yeast mitochondria RNA polymerase.

Yeast mitochondrial RNA polymerase is a nuclear-coded protein of approximately 90,000 daltons comprised of two 45,000-dalton subunits of pI 6.9 to 7.0. To investigate the nature of the initial translation product of the RNA polymerase, we have analyzed those products of a cell-free translation system directed by yeast RNA that are immunoreactive with antibodies to the 45,000-dalton peptide of polymerase. A precursor of one or more of the subunits of the polymerase, 2,000 daltons later than the mature product, has been characterized using immunoreaction, immunocompetition, and peptide digestion. The role of transcription of the polymerase gene in catabolite repression of mitochondrial development has been investigated by analyzing the changes in cell-free synthesis of the RNA polymerase precursor during glucose and raffinose growth. The results indicate an increase in precursor synthesis and probably in the corresponding transcript abundance during glucose derepression. In contrast, the precursor is present at high levels until stationary phase during raffinose growth. These data indicate the involvement of increased transcription of the polymerase gene in the process of derepression.

Cell Nucleus↗