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Biomedical subjects

D Klein

Publications and source records attributed to D Klein.

At least 163 records · Page 9Linked to original sources

Cytomegalovirus infection in a neonatal intensive care unit. Subsequent morbidity and mortality of seropositive infants.

In a study of blood transfusion and cytomegalovirus (CMV) infection in 385 infants, 5 (8%) of 60 seropositive infants with birthweights less than or equal to 1250 g acquired CMV. Four infants had become seronegative by the time of viral excretion and demonstrated significant morbidity with one death. Morbidity included variant (atypical) lymphocytosis, thrombocytopenia, Staphylococcal epidermidis and Candida parapsilosis infections, and respiratory deterioration. Interestingly, the infant who exhibited only minimal morbidity was seropositive at the time of viral excretion. CMV seropositivity at birth may not protect low birthweight (LBW) infants from the morbidity and mortality associated with CMV infection.

Antibodies, Viral↗

Shared class II MHC polymorphisms between humans and chimpanzees.

To gain an insight into the evolution of the major histocompatibility complex alleles, three DRB and one DRA genes were isolated from chimpanzee cDNA libraries. The nucleotide sequences of the chimpanzee DRB (ChLA-DRB) genes were then compared with those of the available HLA-DRB alleles by constructing unrooted phylogenetic trees. All three ChLA-DRB genes were found to be more closely related to certain HLA-DRB alleles than unrelated HLA-DRB alleles are to each other. Since available evidence does not support the convergent evolution of MHC alleles, this result is consistent with the idea that closely related ChLA-DRB and HLA-DRB alleles are derived from common ancestral alleles, the existence of which predates the divergence of human and chimpanzee lineages. The predicted amino acid sequences of mature ChLA-DRA and HLA-DRA molecules differ by only one amino acid.

Amino Acid Sequence↗

Differential expression of the two human arginase genes in hyperargininemia. Enzymatic, pathologic, and molecular analysis.

Previous studies in our laboratory and others have demonstrated in humans and other mammals two isozymes of arginase (AI and AII) that differ both electrophoretically and antigenically. AI, a cytosolic protein found predominantly in liver and red blood cells, is believed to be chiefly responsible for ureagenesis and is the one missing in hyperargininemic patients. Much less is known about AII because it is present in far smaller amounts and localized in less accessible deep tissues, primarily kidney. We now report the application of enzymatic and immunologic methods to assess the independent expression and regulation of these two gene products in normal tissue extracts, two cultured cell lines, and multiple organ samples from a hyperargininemic patient who came to autopsy after an unusually severe clinical course characterized by rapidly progressive hepatic cirrhosis. AI was totally absent (less than 0.1%) in the patient's tissues, whereas marked enhancement of AII activity (four times normal) was seen in the kidney by immunoprecipitation and biochemical inhibition studies. Immunoprecipitation-competition and Western blot analysis failed to reveal presence of even an enzymatically inactive cross-reacting AI protein, whereas Southern blot analysis showed no evidence of a substantial deletion in the AI gene. Induction studies in cell lines that similarly express only the AII isozyme indicated that its activity could be enhanced severalfold by exposure to elevated arginine levels. Our findings suggest that the same induction mechanism may well be operative in hyperargininemic patients, and that the heightened AII activity may be responsible for the persistent ureagenesis seen in this disorder. These data lend further support to the existence of two separate arginase gene loci in humans, and raise possibilities for novel therapeutic approaches based on their independent manipulation.

Arginase↗

Leber's congenital amaurosis associated with high hyperopia in four sisters.

The authors describe a family with five daughters, of whom four are affected with Leber's congenital amaurosis and high hyperopia ranging between +5.5 and +9 diopters. In addition, the second daughter is a little short for her age, and shows a slight dyscrania with prominent frontal and occipital bones, hypoplasia of the nasal bone, and deep and narrow orbits leading to marked enophthalmos. The symptoms are typical of Leber's amaurosis. All children have nystagmus, night blindness, weak or absent pupillary reflexes. Visual fields are constricted or not measurable. The electroretinogram is extinguished, and hyperopia of the axial type was confirmed by ultrasound. Fundus findings are variable with small, pale and somewhat protruding papillae (pseudo-papillitis), narrow retinal vessels, diffuse fundus pigmentation of pepper-and-salt type and unusual yellow coloration of the macular region (diffuse atrophy). The inheritance of Leber's congenital amaurosis is autosomal recessive. The combined occurrence of amaurosis and hyperopia in four children in one family, while the fifth is unaffected and has no refractive error, furnishes a further evidence for the existence of a particular amaurosis-hyperopia subtype of Leber's disease.

Blindness↗

I.29 lymphoma cells express a nonmutated VH gene before and after H chain switch.

The I.29 B cell lymphoma consists of IgM+ and IgA+ cells which express the same germ-line VH gene. IgA+ cells of the I.29 lymphoma were derived from the IgM+ cells by a typical H chain switch recombination event. The IgM+ cells can be induced with LPS to undergo H chain switching in culture. It has been proposed that the somatic hypermutation process is activated during H chain switch, since V genes expressed in IgG+ and IgA+ cells have more frequently undergone mutation than those expressed in IgM+ cells. We have investigated this question by sequencing VH genes expressed before and after H chain switch in the I.29 lymphoma. We have also sequenced the germ-line VH gene corresponding to the gene expressed by I.29 cells to determine whether the VH gene expressed in the IgM+ cells had already undergone somatic mutation. Our results indicate that somatic mutation was not activated in the precursor cell for the I.29 lymphoma, nor during isotype switch in I.29 cells. It is possible that cells of the I.29 lymphoma, or their precursor, have not received the signal which induces somatic mutation, or that I.29 cells belong to a subset of B cells that cannot be induced to undergo any (or much) somatic mutation.

Amino Acid Sequence↗

Cytomegalovirus infection in a neonatal intensive care unit. Blood transfusion practices and incidence of infection.

We studied blood transfusion variables and cytomegalovirus (CMV) infection in 385 infants admitted to the Duke University Medical Center, Durham, NC, neonatal intensive care unit over 14 months. Cytomegalovirus antibody titers were measured at birth and monthly thereafter. Urine cultures for CMV were performed regularly. Infants admitted in the first six months (n = 197) received conventionally prepared blood. Infants admitted in the remaining eight months (n = 188) were given frozen, deglycerolized blood. Of the 105 infants weighing 1250 g or less (low birth weight [LBW]), 90 (86%) received transfusions. Two hundred eighty infants weighed more than 1250 g (non-LBW), and 111 (40%) of these were given blood. In the first six months of the study, three infants had CMV viruria. One case was congenital; two were acquired. Both infants who acquired infection were antibody-positive at birth and received multiple transfusions. In the remaining eight months, five infants had CMV viruria. Two cases were congenital; three were acquired. The three infants who acquired infection were antibody-positive at birth and received multiple transfusions. Our study demonstrates that infants with an LBW are more likely to receive blood transfusion and to be given significantly more blood than non-LBW infants. There was no difference in the number of infants acquiring CMV in the two periods despite the use of different preparations of blood.

Antibodies, Viral↗

Nucleotide sequences of chimpanzee MHC class I alleles: evidence for trans-species mode of evolution.

To obtain an insight into the evolutionary origin of the major histocompatibility complex (MHC) class I polymorphism, a cDNA library was prepared from a heterozygous chimpanzee cell line expressing MHC class I molecules crossreacting with allele-specific HLA-A11 antibodies. The library was screened with human class I locus-specific DNA probes, and clones encoding both alleles at the A and B loci have been identified and sequenced. In addition, the sequences of two HLA-A11 subtypes differing by a single nucleotide substitution have been obtained. The comparison of chimpanzee and human sequences revealed a close similarity (up to 98.5%). The chimpanzee A locus alleles showed greatest similarity to the human HLA-A11/A3 family of alleles, one of them being very close to HLA-A11. Similarly, segments of the ChLA-B alleles displayed greatest similarity to certain HLA-B alleles. The calculated evolutionary branch point for the A11-like alleles is 7 x 10(6) to 9 x 10(6) years, whereas the other A locus alleles diverged between 12 x 10(6) and 17 x 10(6) years ago. Since the human and chimpanzee lineages separated 5 x 10(6) to 7 x 10(6) years ago, our data support the notion that during evolution, MHC alleles are transmitted from one species to the next.

Alleles↗

Serum and quantitative electroencephalographic pharmacokinetics of loprazolam in the elderly.

This study was undertaken to determine the serum pharmacokinetic parameters of loprazolam, a new benzodiazepine hypnotic, in elderly subjects and to compare these with the kinetics of the drug as determined by quantitative EEG analysis. In addition, a 14-day study was undertaken to determine the steady-state serum levels achieved in this population with repeated drug administration. The study was conducted on 16 male and female subjects between the ages of 62 and 72 years, randomly assigned to two groups treated with 0.5 or 1.0 mg of loprazolam. The serum half-life of loprazolam was found to be 5 hours, and the peak serum concentration was reached after 2 hours. Quantitative EEG changes were observed after 30 minutes suggesting rapid access of the drug into the nervous system. Quantitative EEG changes were evident for 9.5 hours, suggesting the persistent effects of an active metabolite. The 14-day study indicated that loprazolam did not accumulate with continued use.

Aged↗

Both GA2, GM2, and GD2 synthases and GM1b, GD1a, and GT1b synthases are single enzymes in Golgi vesicles from rat liver.

Competition experiments using lactosylceramide, ganglioside GM3 and ganglioside GD3 as substrates, as well as mutual inhibitors for ganglioside N-acetylgalactosaminyltransferase, in Golgi vesicles derived from rat liver suggested that N-acetylgalactosamine transfer to these three respective compounds, leading to gangliosides GA2, GM2, and GD2, respectively, is catalyzed by one enzyme. Analogous studies with gangliosides GA1, GM1, and GD1b as glycolipid acceptors in sialyltransferase assays indicated GM1b, GD1a, and GT1b synthases to be identical. These results are incorporated into a model for ganglioside biosynthesis and its regulation.

Algorithms↗

Occult thyroid dysfunction in patients with refractory depression.

Assessment of metabolic rate was useful in evaluating refractory depression in six of 15 women. Five of the six had normal levels of T3 and T4; however, each had an elevated thyrotropin-stimulating hormone level or a low metabolic rate. The depressions responded to medication with thyroid hormone.

Adult↗

Biosynthesis of gangliosides from asialogangliosides in rat liver Golgi vesicles.

Biosynthesis of glycolipids GA2, GA1, GM1b, and GD1c was studied in Golgi vesicles isolated from rat liver. Sequential addition of N-acetylgalactosamine, galactose and two sialic acid residues to lactosylceramide led to the endproduct GD1c. Activities of the corresponding glycosyltransferases were shown to be present in isolated Golgi vesicles and their respective kinetic data were determined. The products of each reaction were characterized by their mobility on thin-layer chromatography, by enzymic degradation to their respective precursors, and in case of GM1b by FAB mass spectrometry.

Animals↗

Metallothionein gene expression in mouse tissues by D-penicillamine.

The effect of D-penicillamine on metallothionein mRNA accumulation was examined in mouse tissues by Northern and dot blot analysis. This drug was given as a single intraperitoneal dose of 250 mg/kg body weight and the metallothionein mRNA content of the tissues was measured 1, 4, 8 and 24 hours later. A detectable increase of mRNA was observed after 1 hour and maximal accumulation was seen after 4 hours in the liver, kidneys, lungs, brain and spleen, whereas in the heart the maximum occurred after 8 hours. In the liver metallothionein mRNA was increased 14.5-fold over the control and in the kidneys it was increased by a factor of 9.2. A significant increase was also seen in the lungs, where it was 10 fold. To determine whether the increase is due to new transcription of the metallothionein gene, animals were pretreated with actinomycin D (1.0 mg/kg body weight) before receiving D-penicillamine. Actinomycin D prevented some of the D-penicillamine-induced increase in metallothionein mRNA, indicating that the drug, to some extent, acts at the transcriptional level. Regulation of metallothionein gene expression may play an important role in the molecular mechanisms involved in the clinical action of D-penicillamine in rheumatoid arthritis.

Animals↗

Substrate specificity of GM2 and GD3 synthase of Golgi vesicles derived from rat liver.

Several GM3 derivatives have been synthesized. Among them were lyso-GM3 derivatives and GM3 analogues with modifications in the sialic acid moiety. They were used as glycolipid acceptors in assays for GM2 and GD3 synthase of rat liver Golgi. Analysis of the resulting enzyme activities and of the reaction products revealed different substrate specificities for GM2 and GD3 synthase although the normal glycolipid acceptor for both transferases is ganglioside GM3. Specificity of GD3 synthase is strongly determined by the substrate's negative charge and the acyl residue in amide bond to the amino group of neuraminic acid, while GM2 synthase reacts quite indifferently to these changes in the sialic moiety of the substrate. Both enzymes seem to be sensitive to the spatial extension at the neuraminic acid's carboxylic group.

Animals↗

The active sites of the beta-lactamases of Streptomyces cacaoi and Streptomyces albus G.

The active-site serine of the extracellular beta-lactamases of Streptomyces cacaoi and Streptomyces albus G has been labelled with beta-iodopenicillanate. The determination of the sequence of the labelled peptides obtained after trypsin digestion of the denatured proteins indicate both enzymes to be class A beta-lactamases. Surprisingly the two Streptomyces enzymes do not appear to be especially homologous, and none of them exhibited a high degree of homology with the Streptomyces R61 DD-peptidase. Our data confirm that, as a family of homologous enzymes, class A is rather heterogeneous, with only a small number of conserved residues in all members of the class.

Amino Acid Sequence↗