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Biomedical subjects

D Linder

Publications and source records attributed to D Linder.

At least 109 records · Page 6Linked to original sources

Translocation X;10 in a case of congenital acute monocytic leukemia.

Unusual cytogenetic findings were noted in the leukemic cells from a patient with congenital acute monocytic leukemia (AMol or M5, according to the FAB classification), whereas, the chromosomes of cultured skin fibroblasts were normal. G-banded karyotypes of leukemic cells showed an X-autosome translocation, 46,X,t(X;10)(Xpter----q13::10q11.2----qter)(10pter---- q11.2::Xq28----q13:: Xq28----qter). Review of reported cases of acute nonlymphocytic leukemia (ANLL) with rearrangements involving chromosomes #10 or X showed a high frequency of abnormalities of the short arm of #10 in myelomonocytic (M4) and monocytic (M5) leukemias, particularly in patients less than 2-yr-of-age. Although previously reported cases of ANLL in infants are predominantly of these types, the translocation observed in this case is unique. Fragile sites known to exist on chromosomes #10 and X are not associated with neoplasia and, except for Xq27-28, were not at the breakpoints of the case presented. The precise location of a human cellular oncogene recently identified on the X chromosome remains unknown.

Chromosome Fragile Sites↗

The glycoprotein 71 of ecotropic Friend murine leukemia virus. Structure of the oligosaccharides linked to asparagine-12.

The glycoprotein from Friend murine leukemia virus was digested with protease from Staphylococcus aureus V8. A glycopeptide comprising the N-terminal glycosylation site (Asn-12) was isolated from the mixture of fragments and analyzed by amino acid sequencing and methylation-capillary gas chromatography-mass spectrometry before and after treatment with sialidase from Vibrio cholerae. Asn-12 was thus found to be substituted by a family of partially sialylated, fucosylated, and intersected glycoprotein N-glycans of the hybrid type.

Amino Acid Sequence↗

The invariant chains of mouse class II antigens: biochemical properties and molecular relationship.

The proteins p40 (Mr = 40 000), p32 (Mr = 32 000), p28 (Mr = 28 000), p20 (Mr = 20 000) and p10 (Mr = 10 000) are described which occur in noncovalent association with the polymorphic alpha, beta heterodimer of class II antigens. They were investigated with respect to their molecular characteristics and their mutual structural relationship. p32, the predominant species of this group corresponds to the invariant chain gamma (Ii). In contrast to the polymorphic subunits alpha and beta, proteins p40, p28, p20 and p10 migrated like gamma in electrophoretically constant positions, when class II molecules of different subregions and different alleles were assessed by two-dimensional gel electrophoresis [1st dimension, isoelectric focusing; 2nd dimension, sodium dodecyl sulfate (SDS) polyacrylamide gel electrophoresis]. Analogous to gamma, they are therefore designated invariant chains. The low Mr species of this group do not arise from higher Mr forms as preparation artefacts. Short-term pulse-chase analysis and cell-free translation of sucrose gradient-fractionated mRNA in conjunction with specific immunoprecipitation rendered the possibility unlikely that individual components of this set of proteins existed in a precursor-product relationship within the cell. Comparative enzymatic fragmentation on SDS polyacrylamide gels as well as tryptic peptide map comparisons by high performance liquid chromatography revealed a high structural relatedness among all members of this group of invariant proteins.

Animals↗

The carboxyterminus of the hemagglutinin-neuraminidase of Newcastle disease virus is exposed at the surface of the viral envelope.

The amino-terminal and the carboxy-terminal amino acids of the hemagglutinin-neuraminidase glycoprotein of the Ulster strain of Newcastle disease virus have been analyzed before and after proteolytic activation of the precursor HNo (Mr approximately 82K). The amino termini of HNo and of the large cleavage fragment HN (approximately 74K) obtained by in vivo and in vitro proteolysis could not be sequenced by Edman degradation. This indicates that in both instances the amino termini are blocked. The carboxy termini of HNo and HN are different as demonstrated by end-point digestion with carboxypeptidase A. Furthermore, a small cleavage fragment (approximately 9K) of HNo that was removed from the virion after trypsin treatment could be purified by HPLC. In contrast to HN, this fragment displays a free amino terminus susceptible to Edman degradation. These data indicate that conversion of HNo involves removal of a 9K glycopeptide from the carboxy-terminal end. Thus, it has to be concluded that, unlike most other viral glycoproteins, the hemagglutinin-neuraminidase is inserted in the envelope with its carboxy terminus exposed at the surface of the virus particle.

Amino Acid Sequence↗

The carbohydrates of mouse hepatitis virus (MHV) A59: structures of the O-glycosidically linked oligosaccharides of glycoprotein E1.

Two size classes of O-glycosidically linked oligosaccharides were liberated from glycoprotein E1 of mouse hepatitis virus (MHV) A59 by reductive beta-elimination and separated by h.p.l.c. The structures of the reduced oligosaccharides were determined by successive exoglycosidase digestions and by methylation analyses involving combined capillary gas chromatography-mass spectrometry and mass fragmentography after chemical ionization with ammonia. Oligosaccharide A (Neu5Ac alpha 2----3 Gal beta 1----3 GalNAc) comprised 35% of the total carbohydrate side chains, while the remaining 65% of the oligosaccharides of E1 had the branched structure B: Neu5Ac alpha 2----3 Gal beta 1----3 (Neu5Ac alpha 2----6) GalNAc. Both oligosaccharides were linked to the E1 polypeptide via N-acetylgalactosamine, and 20% of the sialic acids present in E1 glycopeptides were found to consist of N-acetyl-9-mono-O-acetylneuraminic acid. The reported structures of the O-linked glycans are discussed in the context of the amino acid sequence of E1, which exhibits a cluster of four hydroxyamino acids (Ser-Ser-Thr-Thr) as potential O-glycosylation sites at the amino terminus. Oligosaccharides with identical structures and an identical O-glycosylated tetrapeptide sequence are present in the blood group M-active glycophorin A of the human erythrocyte membrane.

Carbohydrate Sequence↗

Purification and properties of pyruvate kinase type M2 from rat lung.

(1) Pyruvate kinase type M2 from rat lung has been purified 840-fold with an overall yield of 20%. The enzyme gave a single band upon SDS-electrophoresis and isoelectrofocusing and had a specific activity of 1340 U/mg protein. The homotetramer of Mr = 224000 and an isoelectric point of pH 5.8 had an amino acid composition closely resembling that of other pyruvate kinase isoenzymes type M2, except that of the chicken liver. The enzyme was crystallized. (2) The enzyme has its pH optimum at pH 6.5. The K0.5 value for phosphoenolpyruvate is 0.26 mM (nH = 1.81) which decreases in the presence of 0.2 mM fructose 1,6-bisphosphate to 0.056 mM (nH = 1.06). 1 microM fructose 1,6-bisphosphate activates the enzyme at 0.1 mM phosphoenolpyruvate half-maximally. The Km value for ADP at 1 mM phosphoenolpyruvate is 0.4 mM. The Km value for other nucleoside diphosphates increases in the order ADP less than GDP less than IDP less than UDP. (3) No evidence for an interconversion of pyruvate kinase type M2 from rat or chicken lung was found. The enzyme was neither a substrate for the cAMP-dependent protein kinase from rabbit muscle nor for the cAMP-independent protein kinase from chicken liver. Since pyruvate kinase type M2 from chicken liver is inactivated by phosphorylation catalyzed by a cAMP-independent protein kinase (Eigenbrodt, E., Abdel-Fattah Mostafa, M. and Schoner, W. (1977) Hoppe-Seyler's Z. Physiol. Chem. 358, 1047-1055) we suggest that the interconvertible form of pyruvate kinase type M2 may represent a separate form of the pyruvate kinase type M2 family.

Amino Acids↗

Glycoproteins of friend murine leukemia virus: separation and NH2-terminal amino acid sequences of gp69 and gp71.

The NH2-terminal amino acid sequences (initial 23 residues) of Friend murine leukemia virus gp71 and gp69 were determined and found to be different but highly related. Friend murine leukemia virus gp71 differed from Rauscher murine leukemia virus gp70 in only one position. Friend murine leukemia virus gp69 showed approximately 41% homology to these glycoproteins but lacked the glycosylation site (sequon) occurring at position 12 in Rauscher murine leukemia virus gp70.

Amino Acid Sequence↗

Kidney tubule basement membrane alterations in type II membranoproliferative glomerulonephritis.

Fourteen kidney biopsy specimens from nine patients with type II membranoproliferative glomerulonephritis (MPGN) were examined by electron microscopy for tubular basement membrane (TBM) alterations. In all biopsies, laminal densities, charateristic for type II MPGN, were present in the glomerular basement membranes. The TBM alterations observed included: 1) the presence of laminal, and/or discrete, and/or aggregated densities; 2)focal thickening; 3) multilamination; and, 4) vesicular structures. Laminal densities occurred in 6 of the 9 cases examined. All biopsies had TBM densities representative of at least one of the three forms. The occurrence of electron densities in or near the TBM in type II MPGN may have diagnostic value. In those biopsies where tissue is insufficient for immunofluorescence microscopy and where glomeruli are not found on electron microscopy, an electron microscopic search for densities associated with TBMs would be warranted. Although TBM-associated densities are not pathognomonic for type II MPGN, the observation of such densities, espically laminal densities, would be useful in complementing light miccrscopic and clinical findings.

Adolescent↗

1,4-alpha-Glucan phosphorylase form Klebsiella pneumoniae covalently couple on porous glass.

A simplified procedure for the preparation of 1,4-alpha-glucan phosphorylase from Klebsiella pneumoniae is described. An 80-fold purification is achieved in two steps with an overall yield of about 50%. The specific activity of the homogeneous enzyme protein is 17.7 units/mg. Compared with glycogen phosphorylase from rabbit muscle the enzyme from K. pneumoniae shows a markedly higher stability against deforming and chaotropic agents. The 1,4-alpha-glucan phosphorylase was covalently bound to porous glass particles by three different methods. Coupling with glutaraldehyde gave the highest specific activity, i.e., 5.6 units/mg of bound protein or 133 units/g of glass with maltodextrin as substrate. This corresponds to about 30% of the specific activity of the soluble enzyme. With substrates of higher molecular weight, such as glycogen or amylopectin, lower relative activity was observed. The immobilized enzyme preparations showed pH activity profiles which were slightly displaced to higher values and exhibited an increased temperature stability.

Drug Stability↗

1, 4-alpha-Glucan phosphorylase from Klebsiella pneumoniae purification, subunit structure and amino acid composition.

1. A 1,4-alpha-glucan phosphorylase from Klebsiella pneumoniae has been purified about 80-fold with an over-all yield greater than 35%. The purified enzyme has been shown to be homogeneous by gel electrophoresis at different pH-values, by isoelectric focusing, by dodecylsulfate electrophoresis and by ultracentrifugation. 2. The molecular weight of the native enzyme has been determined to be 180 000 by ultra-centrifugation studies, in good agreement with the value of 189 000 estimated by gel permeation chromatography. 3. The enzyme dissociates in the presence of 0.1% dodecylsulfate or 5 M guanidine hydrochloride into polypeptide chains. The molecular weight of these polypeptide chains has been found to be 88 000 by dodecylsulfate polyacrylamide gel electrophoresis and 99 000 by sedimentation equilibrium studies, indicating that the native enzyme is composed of two polypeptide chains. 4. The enzyme contains pyridoxalphosphate with a stoichiometry of two moles per 180 000 g protein, confirming that the 1,4-alpha-glucan phosphorylase from Klebsiella pneumoniae is a dimeric enzyme. 5. The amino acid composition of the enzyme has been determined, and its correspondence to that of 1,4-alpha-glucan phosphorylases from other sources is discussed. 6. The pI of the enzyme has been shown to be 5.3 and its pH-optimum to be about pH 5.9. The enzyme is stable in the range from pH 5.9 to 10.5.

Amino Acids↗

Culture of cells from the urine and bladder washings of adults.

Cell cultures were attempted from the urine of 5 adults. Of the 28 cultures which were initiated, 21 resulted in the formation of one or more colonies of epithelial cells. Growth could be maintained up to 2 transfers. Poor colony formation was evident in 2 of 4 samples of a saline irrigation of the bladder. This technique may prove to be useful for short-term studies when venipuncture or biopsy are impractical and when epithelial cells are desirable.

Cells, Cultured↗

Estimating distances from the centromere by means of benign ovarian teratomas in man.

Under the assumption that benign ovarian teratomas in man arise parthenogenically from a germ cell by suppression of the second meiotic division, the distance of a gene from its centromere can be estimated from the observed proportion of heterozygous teratomas collected from heterozygous hosts. The frequency of heterozygous teratomas of heterozygous hosts is equivalent to the frequency of second division segregation at the gene locus which has been used for centromere-related mapping in fungal genetics for more than 40 years. Mapping functions useful for teratoma-based mapping in man are presented.

Chromosome Mapping↗