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Biomedical subjects

J Yoon

Publications and source records attributed to J Yoon.

At least 73 records · Page 4Linked to original sources

YAC/STS map of 15Mb of Xp21.3-p11.3, at 100kb resolution, with refined comparisons of genetic distances and DMD structure.

The 15 Mb region between DXS997 and DXS8054 in Xp21.3-p11.3 has been mapped at seven-fold average coverage in yeast artificial chromosomes (YACs) and 100 kb inter-sequence tagged site (STS) distance. YACs from six different collections show self-consistent maps. The STSs include 18 (CA) repeat and one tetranucleotide repeat marker that detect polymorphism, as well as eight well-studied genes, a second site for MXS1 sequences, and three expressed sequence tags (ESTs). One of the ESTs maps to intron 7 of Duchenne muscular dystrophy, and seems to be a processed intronic sequence with a poly(A) tail.

Base Sequence↗

Investigations of azapeptides as mimetics of Leu-enkephalin.

Solution syntheses of azapeptide pentamers 2, 3, and 4 were accomplished. The binding affinity of these azapeptides and azatide 1 were examined in the context of monoclonal antibody 3-E7 known to strongly bind the [Leu5]enkephalin sequence.

Enkephalin, Leucine↗

Environmental Management of Human Waste Disposal for Recreational Boating Activities

/ A methodology to estimate the number of pump-out facilities and dump stations required to service human waste disposal for recreational power boating activities in Pennsylvania during the 1994 boating season is described. Study results suggest that a total of 39 additional pump-out stations and 13 dump stations may be required on seven major waterbodies: The Three Rivers Area, Lake Erie/Presque Isle Bay, Raystown Lake, the Susquehanna River, the Delaware River, Lake Wallenpaupack, and the Kinzua Reservoir. Suggestions for improving the methodology are provided. KEY WORDS: Human waste; Recreation; Power boating; Waste facilities; Waste disposal; Pennsylvania

Journal Article↗

Pulsed wave and color Doppler echocardiography and cardiac catheterization findings in bilateral pulmonary vein stenosis.

Pulmonary vein stenosis is a rare condition that usually is congenital in origin; it is almost invariably fatal in its bilateral and severe forms. It is often overlooked, however, during clinical examination, routine echocardiography, and even at cardiac catheterization. This report describes the pulsed Doppler, color flow echocardiography, and hemodynamic findings of bilateral pulmonary vein stenosis that accompany ventricular septal defect and atrial septal defect corrected by surgery.

Adult↗

Promoter region of the Drosophila melanogaster norpA gene.

We have sequenced the 5'-flanking region of the Drosophila melanogaster norpA gene and characterized its promoter. The potential promoter region, which was deduced from the determination of the transcription start point (tsp), lacks a distinct TATA box sequence. Deletion analysis of the promoter region suggests that the minimal promoter necessary for efficient expression of the gene is located between -138 (PstI) and +278 relative to the tsp. Within this minimal promoter region, at least two downstream regulatory elements responsible for the stimulation of gene expression seem to exist in the DNA fragments between +44 and +121 and between +214 and +278. Among these, the DNA fragment between +44 and +121 affects promoter activity more dramatically (about 6-7 fold). This DNA fragment contains the consensus promoter element previously reported to be important for photoreceptor cell-specific expression, and this promoter element seems to be working in the norpA gene expression.

Animals↗

Differential expression of XAP5, a candidate disease gene.

We have isolated a full-length cDNA corresponding to the XAP5 gene in Xq28. An unusual feature of the cDNA is that it contains runs of CCG repeats in the 5' untranslated region, typical of genes that exhibit anticipation. It has a striking pattern of differential expression and is greatly enhanced in various fetal tissues. This predicted protein encodes a unique 339-amino-acid polypeptide that contains a large percentage of highly charged residues and a possible nuclear localization signal. A comparison to genomic sequence shows that XAP-5 comprises 13 exons spanning 6.5 kb. An examination of the human population indicates that the longest CCG run is polymorphic and varies in length from 8 to 12 repeats.

Amino Acid Sequence↗

Analysis of the structure and expression fo the TFIIB gene in Drosophila melanogaster.

We have isolated and characterized a genomic clone encoding the Drosophila melanogaster transcription factor IIB (TFIIB). The coding region of the TFIIB gene is interrupted by three short introns. The 5'-flanking region of the gene lacks the typical TATA box sequence like those of other known genes encoding the general transcription factors. In addition, the 5'-flanking region of the gene contains several common DNA sequences present in Drosophila TBP and TFIIS genes, suggesting the common regulation mechanism of gene expression. RNA blot analysis revealed that the gene expresses 1.6 kb, 1.3 kb and 1.2 kb mRNAs throughout development and in adults. Deletion analysis of the promoter region shows that the minimal promoter necessary for efficient expression is located between -698 (PstI) and +60 relative to the transcription start point. Within this minimal promoter region, the upstream regulatory element responsible for the stimulation of gene expression may exist in the DNA fragment between -698 (PsfI) and -351 (StuI).

Amino Acid Sequence↗

Prohormone convertase 1 is necessary for the formation of cholecystokinin 8 in Rin5F and STC-1 cells.

Several immortalized cell lines serve as models for procholecystokinin (pro-CCK) processing. Rin5F cells, derived from a rat insulinoma, and STC-1 cells, derived from a murine intestinal tumor, process pro-CCK mainly to amidated CCK 8. Both also make significant quantities of amidated CCK 22, a slightly larger form found in the gut. Many modifications are necessary during pro-CCK processing including cleavages performed by endoproteases, the identities of which are unknown. A candidate endoprotease is prohormone convertase 1 (PC1) also known as PC3, a Ca2+-dependent serine endoprotease of the subtilisin family. Constitutive expression of antisense PC1 message in stably transfected Rin5F cells resulted in a significant reduction of the cellular content of CCK 8 as measured by radioimmunoassay. Several affected cell lines displayed about 80% reduction in CCK content in early passages after transfection. Expression of antisense PC1 message in these cell lines resulted in a selective depletion of CCK 8 and a comparative sparing of CCK 22. The induction of antisense PC1 message within a single subclone of Rin5F cells using the Lac Switch system also resulted in a significant inhibition of CCK content. Expression of antisense PC1 message in a stably transfected STC-1 cell line also resulted in a decrease in CCK content and in PC1 protein expression, and the specific depletion of CCK 8 with comparative sparing of CCK 22. These observations support the hypothesis that PC1 is necessary for pro-CCK processing in Rin5F and STC-1 cells and suggests a role for PC1 endoprotease in the biosynthesis of CCK 8 in vivo.

Animals↗

Three-year follow-up of a posttraumatic right coronary aneurysm.

Posttraumatic saccular aneurysm of the right coronary artery is a rare complication of nonpenetrating chest trauma. We observed a posttraumatic coronary aneurysm for 3 years and noted that the aneurysm has changed in shape, with partial obliteration of the aneurysm sac, and that its clinical course was uneventful with conservative treatment. Surgical removal of aneurysms has been advocated in the literature; however, conservative medical treatment and a wait-and-see policy can be considered as a treatment modality for posttraumatic coronary aneurysm.

Adult↗

Prohormone convertase 2 is necessary for the formation of cholecystokinin-22, but not cholecystokinin-8, in RIN5F and STC-1 cells.

Two endocrine tumor cell lines from pancreas (RIN5F) and intestine (STC-1) express cholecystokinin (CCK) messenger RNA and are able to posttranslationally process pro-CCK to CCK-22 and CCK-8 amide. Both of these forms are also secreted by these cells. Because they make and secrete forms of amidated CCK larger than CCK-8, they represent a model of pro-CCK processing in the gut and allow investigation of possible mechanisms for tissue differences in prohormone processing. Both of these cells express two endoproteases convertase-1 (PC1) also known as PC3 and prohormone convertase-2 (PC2), which may be involved in pro-CCK processing. We have previously shown than inhibition of PC1 expression in these cells using stable expression of antisense messenger RNA caused a significant reduction in cellular content of amidated CCK and caused a selective depletion of CCK-8 with a comparative sparing of CCK-22. We demonstrate here that inhibition of PC2 expression in these cells also caused a large initial decrease in CCK content and produced a selective depletion of CCK-22 and a comparative sparing of CCK-8. These results support both a role for both PC1 and PC2 in pro-CCK processing in these cells and the hypothesis that tissue-specific processing of pro-CCK may be explained by differences in expression or activity of PC1 and PC2.

Cholecystokinin↗

Bilateral coronary arteriovenous fistula coexistent with atrial septal defect and pulmonary stenosis.

A coronary arteriovenous fistula consists of a communication between a coronary artery and a cardiac chamber, a great artery or the vena cava. It is the most common anomaly that can affect coronary perfusion. Bilateral involvement of coronary fistula, however, constitutes an uncommon subgroup of coronary arteriovenous fistulas. We report a case which shows a rare occurrence of bilateral coronary arteriovenous fistula coexistent with atrial septal defect and pulmonic stenosis.

Arteries↗

Amino acid polymorphism and rare electrophoretic variants of G6PD from natural populations of Drosophila melanogaster.

Identifying the amino acid changes responsible for electrophoretic variants is essential to understanding the significance of allozyme polymorphism in adaptation. The amino acid mutations responsible for the common G6PD allozyme polymorphisms in Drosophila melanogaster have been recently described. This study characterizes the amino acid changes associated with 11 rare electrophoretic G6PD variants. The 11 rare electrophoretic variants result from six independent amino acid mutations. The in vivo function of the rare variants was determined in an earlier study and most variants fell into one of two function classes. It is shown here that the function of the rare variants reflects the state of the Pro/Leu mutation responsible for the A/B allozyme polymorphism in each variant. Two mutations destabilize quaternary structure resulting in shifts from tetrameric dimeric alleles, and one of these also results in a variant with in vivo function intermediate to A and B. That mutation is an aspartic-acid-to-asparagine change that is two residues away from the Pro/Leu polymorphism responsible for the A/B dimertetramer quaternary shift. Structure-function relationships based on studies of human G6PD deficiency-associated mutations predict that these last two amino acid changes fall within the protein domain responsible for NADP binding.

Amino Acid Sequence↗

Historical selection, amino acid polymorphism and lineage-specific divergence at the G6pd locus in Drosophila melanogaster and D. simulans.

The nucleotide diversity across 1705 bp of the G6pd gene is studied in 50 Drosophila melanogaster and 12 D. simulans lines. Our earlier report contrasted intraspecific polymorphism and interspecific differences at silent and replacement sites in these species. This report expands the number of European and African lines and examines the pattern of polymorphism with respect to the common A/B allozymes. In D. melanogaster the silent nucleotide diversity varies 2.8-fold across localities. The B allele sequences are two-to fourfold more variable than the derived A allele, and differences between allozymes are twice as among B alleles. There is strong linkage disequilibrium across the G6pd region. In both species the level of silent polymorphism increases from the 5' to 3' ends, while there is no comparable pattern in level of silent site divergence or fixation. The neutral model is not rejected in either species. Using D. yakuba as an outgroup, the D. melanogaster lineage shows a twofold greater rate of silent fixation, but less than half the rate of amino acid replacement. Lineage-specific differences in mutation fixation are inconsistent with neutral expectations and suggest the interaction of species-specific population size differences with both weakly advantageous and deleterious selection.

Animals↗

Stability of fronto-orbital advancement in nonsyndromic bilateral coronal synostosis: a quantitative three-dimensional computed tomographic study.

Fronto-orbital dysmorphology in nonsyndromic bilateral coronal synostosis includes frontal flattening, supraorbital recession, and ocular globe protrusion. Surgical advancement of the supraorbital region ("bandeau") is performed to correct these deformities. A retrospective analysis of 10 consecutive patients with nonsyndromic bilateral coronal synostosis was performed to assess the effect of two types of bandeau fixation at the nasion. The advanced bandeau was fixed medially at the nasion with a calvarial bone graft and polyglycolic acid sutures (bone graft/suture group, five patients) or with a microplate (plate group, five patients) and bilaterally at pterion with calvarial bone grafts and polyglycolic acid sutures (all patients). The cranio-orbital dysmorphology and the surgical results were studied using pre-, peri-, and post-operative three-dimensional computed tomographic (CT) data. Reformation, manipulation, editing, and quantitative measurements of the CT data were performed on a computer workstation and Analyze imaging program. Four measurements performed to evaluate the fronto-orbital morphology: the length:width ratio of anterior cranial fossa, ventral globe index, cornea position, and supraorbital rim lag. The ventral globe index assessed the degree of eyeball protrusion out of the orbit cavity. Measurements of the cornea position and supraorbital rim lag were performed on the longitudinal orbit projections of the CT data. Six normal skull CT scans were available for same measurement and comparison. Measurements of the preoperative fronto-orbital dysmorphology in bilateral coronal synostosis were significantly different from those of normal subjects. One year after the surgery, the length:width ratio of the anterior cranial fossa was normalized in both groups. The ventral globe index was improved but not normalized in both groups, whereas the cornea position and supraorbital rim lag were improved in the bone graft/suture group but were normalized in the plate group. Based on the quantitative data, the surgical outcomes in the plate group were significantly better than those in the bone graft/suture group. Major relapse of surgical advancement in the bone graft/suture group seemed to occur in perioperative period. In summary, at 1 year postoperatively, the bandeau advancement improved but did not entirely normalize the fronto-orbital dysmorphology of nonsyndromic bilateral coronal synostosis in either group. We conclude that plate rigid fixation at the nasion provides superior stability for bandeau advancement compared with bone graft/suture fixation.

Bone Plates↗

Mutational analysis of a conserved motif of Agrobacterium tumefaciens VirD2.

The VirD2 polypeptide from Agrobacterium tumefaciens, in the presence of VirD1, introduces a site- and strand-specific nick at the T-DNA borders. A similar reaction at the origin of transfer (oriT) of plasmids is essential for plasmid transfer by bacterial conjugation. A comparison of protein sequences of VirD2 and its functional homologs in bacterial conjugation and in rolling circle replication revealed that they share a conserved 14 residue segment, HxDxxx(P/u)HuHuuux [residues 126-139 of VirD2; Ilyina, T.V. and Koonin, E.V. (1992) Nucleic Acids Res. 20, 3279-3285]. A mutational approach was used to test the role of these residues in the endonuclease activity of VirD2. The results demonstrated that the two invariant histidine residues (H133 and H135) are essential for activity. Mutations at three sites, histidine 126, aspartic acid 128 and aspartic acid 130, that are conserved in a subfamily of the plasmid mobilization proteins, led to the loss of VirD2 activity. Aspartic acid at position 130, could be substituted with glutamic acid and to a much lesser extent, with tyrosine. In contrast, another conserved residue, asparagine 139, tolerated many different amino acid substitutions. The non-conserved residues, arginine 129, proline 132 and leucine 134, were also found to be important for function. Isolation of null mutations that map throughout this conserved domain confirm the hypothesis that this region is essential for function.

Agrobacterium tumefaciens↗

Molecular characterization of two Drosophila guanylate cyclases expressed in the nervous system.

We have isolated, by interspecies hybridization, two classes of Drosophila cDNA each encoding a different guanylate cyclase (GC). One of them encodes an alpha subunit homolog of soluble GC, designated DGC alpha 1, and the other encodes a receptor-type GC, designated DrGC. The dgc alpha 1 cDNA encodes a protein of 676 amino acids and maps to 99B. In situ hybridization to adult tissue sections showed that dgc alpha 1 mRNA is found mainly in the cell bodies of the optic lobe, central brain, and thoracic ganglia. The DGC alpha 1 protein was also localized primarily to the nervous system by immunocytochemical staining, consistent with results of in situ hybridization. However, no detectable expression of this protein was found in the retina. The other class of cDNA, drgc, maps to 76C and encodes a 1525-amino acid protein displaying structural features similar to other known receptor-type guanylate cyclases. However, it has a C-terminal 430 amino acid region that has no homology to any known proteins. drgc RNA is expressed at low levels throughout development and in adult heads and bodies. In situ hybridizations to adult tissue sections showed that drgc mRNA is expressed in a wide range of tissues, including the optic lobe, central brain, thoracic ganglia, digestive tract, and the oocyte.

Amino Acid Sequence↗

Isolation and characterization of the gene encoding the Drosophila melanogaster transcriptional elongation factor, TFIIS.

We have characterized a genomic clone encoding the Drosophila melanogaster transcriptional elongation factor, TFIIS. The coding region of the TFIIS gene is interrupted by a short intron. The potential promoter region, deduced from the determination of the transcription start point (tsp), lacks distinct TATAAA or CCAAT box consensus sequences. Southern analysis and the in situ hybridization to chromosomes suggests that it is single-copy gene which is localized to the 35B region on the left arm of the second chromosome.

Animals↗

Acquired cutis laxa associated with chronic urticaria.

A 31-year-old man had cutis laxa after an urticarial eruption. He had no systemic manifestations. In urticarial lesions, elastolysis occurred only within the inflammatory infiltrate of neutrophils around the vessels and between the collagen bundles. In lax skin, elastolysis occurred throughout the entire dermis. Electron microscopic study showed a markedly decreased number of elastic fibers, with elastolysis most predominant near the inflammatory cells. These findings suggest that the neutrophil plays a significant role in the destruction of elastic fibers and subsequent development of cutis laxa.

Adult↗