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Y H Edwards

Publications and source records attributed to Y H Edwards.

At least 73 records · Page 4Linked to original sources

Characterisation of cDNA clones for rat muscle carbonic anhydrase III.

cDNA clones for rat muscle carbonic anhydrase III have been isolated from a lambda gt-11 library and sequenced. Comparison with human CAIII cDNA showed about 90% homology to rat. The rat clones were used to estimate mRNA from liver and muscle on Northern blots and showed that the sexual dimorphism of CAIII in rat liver relates to a difference in mRNA levels.

Animals↗

A novel form of tissue-specific RNA processing produces apolipoprotein-B48 in intestine.

Evidence suggests that intestinal apo-B48 is colinear with the amino-terminal half of hepatic apo-B100. To investigate the mechanism of apo-B48 production, we examined cDNA clones from human and rabbit small intestine. All clones contained a single C----T base difference from the hepatic sequence, resulting in a translational stop at codon 2153. Amplification by the polymerase chain reaction of cDNA from human and rabbit small intestine, rabbit liver, and the human hepatoma cell line HepG2 showed that the stop codon was only present in intestinal mRNA. Enterocyte genomic DNA did not contain the stop codon. We suggest that a co- or posttranscriptional C----U change may result in the production of apo-B48, which represents the amino-terminal 2152 amino acids of apo-B100. This is the first example of tissue-specific modification of a single mRNA nucleotide resulting in two different proteins from the same primary transcript.

Amino Acid Sequence↗

Locus determining the human sperm-specific lactate dehydrogenase, LDHC, is syntenic with LDHA.

From the data presented in this report, the human LDHC gene locus is assigned to chromosome 11. Three genes determine lactate dehydrogenase (LDH) in man. LDHA and LDHB are expressed in most somatic tissues, while expression of LDHC is confined to the germinal epithelium of the testes. A human LDHC cDNA clone was used as a probe to analyze genomic DNA from rodent/human somatic cell hybrids. The pattern of bands with LDHC hybridization is easily distinguished from the pattern detected by LDHA hybridization, and the LDHC probe is specific for testis mRNA. The structural gene LDHA has been previously assigned to human chromosome 11, while LDHB maps to chromosome 12. Studies of pigeon LDH have shown tight linkage between LDHB and LDHC leading to the expectation that these genes would be syntenic in man. However, the data presented in this paper show conclusively that LDHC is syntenic with LDHA on human chromosome 11. The terminology for LDH genes LDHA, LDHB, and LDHC is equivalent to Ldh1, Ldh2, and Ldh3, respectively.

Animals↗

Regional localization of carbonic anhydrase genes CA1 and CA3 on human chromosome 8.

The human carbonic anhydrase isozymes represent a family of homologous proteins which are important in respiratory function, fluid secretion, and maintenance of cellular acid-base homeostasis. Using somatic cell genetic techniques we have mapped two of the CA genes (CA1 and CA3) to human chromosome 8. In situ hybridization data demonstrates that both CA1 and CA3 map to the same region (q13-q22) of chromosome 8.

Animals↗

Nucleotide and amino acid sequences of human intestinal alkaline phosphatase: close homology to placental alkaline phosphatase.

A cDNA clone for human adult intestinal alkaline phosphatase (ALP) [orthophosphoric-monoester phosphohydrolase (alkaline optimum); EC 3.1.3.1] was isolated from a lambda gt11 expression library. The cDNA insert of this clone is 2513 base pairs in length and contains an open reading frame that encodes a 528-amino acid polypeptide. This deduced polypeptide contains the first 40 amino acids of human intestinal ALP, as determined by direct protein sequencing. Intestinal ALP shows 86.5% amino acid identity to placental (type 1) ALP and 56.6% amino acid identity to liver/bone/kidney ALP. In the 3'-untranslated regions, intestinal and placental ALP cDNAs are 73.5% identical (excluding gaps). The evolution of this multigene enzyme family is discussed.

Alkaline Phosphatase↗

Human muscle carbonic anhydrase: gene structure and DNA methylation patterns in fetal and adult tissues.

We report the isolation and analysis of genomic clones comprising the entire gene coding for the human muscle carbonic anhydrase, CAIII. The gene spans 10.3 kb and has a seven-exon/six-intron structure. A noncanonical TATA box, a CCAAT motif, and two CCGCCC elements are present in the sequences upstream of exon 1. Although the expression of CAIII shows strict tissue specificity, the gene exhibits a number of features normally associated with housekeeping enzymes. For example, there is 48% homology with a 25-bp consensus sequence between the TATA box and the cap site and there is a CpG-rich island spanning a 469-bp sequence near to the origin of transcription. Methylation studies suggest that some CCGG sites clustered in the CpG-rich island are undermethylated in DNA from fetal and adult muscle and in other tissues irrespective of CAIII expression. In contrast, several nonclustered CCGG sites show a methylation pattern that correlates with gene expression. However DNA from differentiated type II adult muscle fibers is undermethylated at these sites even though CAIII is not expressed.

Adult↗

Nucleotide sequence and derived amino acid sequence of a cDNA encoding human muscle carbonic anhydrase.

We report the nucleotide (nt) sequence of a full length cDNA clone, pCA15, which encodes the human muscle-specific carbonic anhydrase, CAIII. pCA15 identifies a 1.7-kb mRNA, which is present at high levels in skeletal muscle, at much lower levels in cardiac and smooth muscle and which appears to be developmentally regulated. The CAIII mRNA is distinguished by a 887-nt long 3'-untranslated region, containing two AAUAAA signal sequences and is longer than either of the mRNAs encoding the erythrocyte CAs, CAI and CAII, which each have relatively shorter 3'-untranslated regions, 360 and 670 nt long, respectively. The derived amino acid (aa) sequence for human CAIII shows 85% homology with ox CAIII, 62% homology with human CAII and 54% with human CAI when simple pairwise aa comparisons are made. We describe an allelic variation at a TaqI restriction site for CAIII which occurs at high frequency in the European population.

Amino Acid Sequence↗

Assignment of the gene determining human carbonic anhydrase, CAI, to chromosome 8.

A cDNA clone complementary to the mRNA encoding the rabbit erythrocyte specific carbonic anhydrase, CAI, has been used as probe for human CAI sequences in the analysis of DNA from panels of rodent/human somatic cell hybrids. The presence of the human CAI gene in all hybrids correlates with the presence of chromosome 8. Together with published mapping data, this assignment indicates that three CA loci are situated on chromosome 8.

Animals↗

The gene for human muscle specific carbonic anhydrase (CAIII) is assigned to chromosome 8.

A cDNA clone complementary to the mRNA encoding the human muscle specific carbonic anhydrase CAIII has been used as probe in the analysis of DNA from panels of rodent/human somatic cell hybrids. The presence of the CA III gene in all hybrids correlates with the presence of chromosome 8. This is the first assignment of the CAIII gene in any species and, together with published mapping data, indicates that all of the human CA loci are situated on chromosome 8.

Animals↗

Myoglobin expression: early induction and subsequent modulation of myoglobin and myoglobin mRNA during myogenesis.

We showed that myoglobin gene transcription and the appearance of myoglobin occur very early in myogenesis, in both humans and mice. In contrast to the contractile protein genes, there is a subsequent increase of 50- to 100-fold in myoglobin mRNA and protein levels during later muscle development. Myoglobin and myoglobin mRNA are present at elevated levels in fetal heart and are also detectable at low levels in adult smooth muscle. The absolute level of myoglobin mRNA in highly myoglobinized seal muscle is very high [2.8% of the total population of poly(A)+ RNAs]. Levels of myoglobin in seal skeletal muscle and in various human muscle types appear to be determined by the size of the myoglobin mRNA pool. In contrast, low levels of myoglobin in mouse skeletal muscle are not apparently correlated with low levels of myoglobin mRNA. As expected from the early appearance of myoglobin mRNA in embryonic skeletal muscle, both rat and mouse embryonic myoblasts accumulate myoglobin mRNA on fusion and differentiation in vitro.

Actins↗

A study of erythrocyte membrane proteins and urinary polypeptides in conga drumming haemoglobinuria.

The erythrocyte membrane proteins and glycoproteins and urinary polypeptides have been examined in a patient exhibiting intermittent pigmenturia associated with conga drumming. Significant excretion of haemoglobin, albumin and probably erythrocyte carbonic anhydrase but not myoglobin occurred during the acute phase of the conga drumming-induced pigmenturia. This usually ceased within 24-48 h. We found no evidence of aberrant erythrocyte membrane components on electrophoresis with either protein staining or a range of 125I-labelled lectins used for detection.

Adult↗

Human myosin heavy chain genes assigned to chromosome 17 using a human cDNA clone as probe.

A cDNA clone complementary to the mRNA encoding human myosin heavy chain has been isolated from a human fetal skeletal muscle cDNA library. A 600 base pair fragment of the inserted human cDNA has been used as probe in the Southern analysis of DNA from panels of rat/human and mouse/human somatic cell hybrids. All the sequences detected by this probe have been mapped to chromosome 17 in the region 17pter----17p11. There was no evidence for MHC sequences on any other chromosome.

Animals↗

Isolation of a cDNA clone for the human muscle specific carbonic anhydrase, CAIII.

The molecular cloning of cDNA for the human muscle specific carbonic anhydrase CAIII is described. The recombinant was isolated from a human muscle cDNA library prepared in the expression vector lambda gt11, and was characterized by hybridization selection and immunoprecipitation. A comparison of insert cDNA and mRNA sizes suggests that the cDNA is full length and includes extensive untranslated sequences. Preliminary sequence data have confirmed the authenticity of this clone and Southern blotting of human and rodent DNA indicates that it will be a useful probe in the analysis of somatic cell hybrids.

Animals↗

Human glyceraldehyde-3-phosphate dehydrogenase: mRNA levels and enzyme activity in developing muscle.

Analysis of human glyceraldehyde-3-phosphate dehydrogenase mRNA revealed that levels in adult skeletal muscle are 12-fold greater per microgram of polyadenylated RNA than in fetal skeletal muscle, whereas in cardiac muscle RNA levels were about equal in fetal and adult tissue. The mRNA levels correlate well with glyceraldehyde 3-phosphate dehydrogenase enzyme activities. There was no evidence for fetus- or tissue-specific forms.

Adult↗

Complete hydatidiform moles combine maternal mitochondria with a paternal nuclear genome.

The parental origin of mitochondria in hydatidiform moles has been investigated by analysis of genetic variants of mtDNA restriction enzyme patterns. In six complete moles the mtDNA was found to be maternal in origin, with no contribution from the sperm mitochondria, while the nuclear genome was shown to be exclusively paternal in five cases. The occurrence of mtDNA variation in the healthy population was investigated using white blood cells and placentae, and the most common variation occurred at the Ava II restriction sites. The variants exhibited by molar mtDNA were the same as those found in material from healthy individuals.

DNA Restriction Enzymes↗

The polypeptide profiles of strains of the Trypanosoma subgenera Schizotrypanum and Trypanozoon: peptideme characterization.

Examination, by SDS-PAGE, of the polypeptide profiles of 36 Brazilian strains of Trypanosoma (Schizotrypanum) cruzi has revealed five peptidemes (subpopulations having similar polypeptide profiles) recognizing differences not apparent from zymodeme analysis. T. cruzi zymodeme (Z)1 has been subdivided into peptidemes 3, 4 and 5 (one example of Z2 was included in peptideme 5). Peptideme 1 consisted mostly of Z2 strains except for one example each of Z1 and Z3. One strain of Z2 (Tc 003) was sufficiently dissimilar to merit separation into peptideme 2. Peptideme characterization was not possible with the Trypanozoon trypanosomes since there were no significant differences in the polypeptide profiles of 56 strains from Africa and South America; their profiles could only be compared in the molecular weight ranges 94,000 to 70,000 and below 36,000 because of distortion resulting from the variant specific surface glycoproteins. It was possible to differentiate between eight VATs of T. (Trypanozoon) brucei (BruTat 2 to 9) by isoelectric focusing of their soluble proteins.

Animals↗