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result(s) for
"Maestri, Nancy E"
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Long-Term Treatment of Girls with Ornithine Transcarbamylase Deficiency
by
Clissold, David B
,
Brusilow, Saul W
,
Bassett, Susan S
in
Adolescent
,
Amino Acid Metabolism, Inborn Errors - complications
,
Amino Acid Metabolism, Inborn Errors - drug therapy
1996
Ornithine transcarbamylase (ornithine carbamoyltransferase) deficiency is an X-linked disorder in which the synthesis of citrulline, and hence urea, from carbamoyl phosphate and ornithine is impaired. The consequences include hyperammonemia, hyperglutaminemia, hypoargininemia, hypocitrullinemia, and episodic encephalopathy that, if uncontrolled, results in brain injury and death. The most dramatic form of the disease occurs in newborn boys as catastrophic hyperammonemic encephalopathy; hemizygous males who survive the neonatal period have a poor neurologic outcome, with a high incidence of mental retardation, cerebral palsy, and seizures.
1
It is now apparent, however, that the disease may occur in males from the neonatal period through adulthood, . . .
Journal Article
Linkage Map of the Short Arm of Human Chromosome 11: Location of the Genes for Catalase, Calcitonin, and Insulin-Like Growth Factor II
by
Korneluk, Robert G.
,
Antonarakis, Stylianos E.
,
Jane D. J. Daniels
in
Biological and medical sciences
,
Calcitonin - genetics
,
Catalase - genetics
1985
The following order of genes on the short arm of human chromosome 11 (11p) was determined previously: parathyroid hormone (PTH)--the β -globin gene cluster (HBBC)--HRAS1/insulin. Although it is generally agreed that HRAS1 (formerly termed c-Ha-ras-1) and the insulin gene are close to each other [1-4 centimorgans (cM)], their order on chromosome 11p is still in question. We have now added three other genes, those for catalase, calcitonin, and insulin-like growth factor II (IGF-II), to this map of chromosome 11p by use of restriction site polymorphisms adjacent to these genes in classical linkage analysis. Most importantly, we find no evidence of linkage between the catalase and HBBC loci. In addition, our data indicate that the calcitonin gene is located between the catalase gene and the PTH gene. Our best estimate of the distance between the catalase and calcitonin genes is ≈ 16 cM, while that between the calcitonin and PTH genes is ≈ 8 cM. In agreement, very loose linkage was found between the catalase and PTH loci (≈ 26 cM). Since the catalase locus has been mapped to 11p13, these data support the view that the PTH, HBBC, HRAS1, and insulin loci are located on the distal short arm of chromosome 11. The IGF-II gene is tightly linked to both the HRAS1 oncogene and the insulin gene since no recombinants were observed between the IGF-II and the HRAS1/insulin loci. Thus, based on our linkage analysis we propose that the most likely gene order for the short arm of chromosome 11 is centromere--catalase--calcitonin--PTH-- HBBC--HRAS1/insulin--telomere and that the IGF-II gene is very close to both the HRAS1 and the insulin genes.
Journal Article
No Evidence of Linkage for Cleft Lip with or without Cleft Palate to a Marker Near the Transforming Growth Factor Alpha Locus in Two Populations
by
García-Delgado, Constanza
,
Vinageras-Guarneros, Enrique
,
Beaty, Terri H.
in
Biological and medical sciences
,
Chromosome Mapping
,
Cleft Lip - genetics
1997
Nonsyndromic cleft lip with or without cleft palate is a common birth defect, affecting approximately 1 in 1,000 Caucasian newborns. Thirty-five multiplex families from the mid-Atlantic region of the United States and 22 families from central Mexico with a nonsyndromic form of cleft lip with or without cleft palate were selected for a linkage analysis. A tetranucleotide repeat marker (D2S443) located on the same yeast artificial chromosome as the transforming growth factor alpha locus was tested for linkage to a putative susceptibility Mendelian locus under varying levels of pentrance. No evidence for linkage between D2S443 and a susceptibility locus for cleft lip with or without cleft palate was found. Insight is given to explain this outcome in spite of the statistically significant associations found by other investigators.
Journal Article
Retinoid Metabolism and Mode of Action
by
Adamo, Sergio
,
Silverman-Jones, Carol S.
,
Bhat, Pangala V.
in
Animals
,
Benzopyrenes - metabolism
,
Biosynthesis
1980
Vitamin A and its derivatives (retinoids) are necessary for the maintenance of normal phenotypic expression. An attempt at understanding the biochemical role of vitamin A has led to the demonstration of a new pathway for retinol. In this pathway, vitamin A is phosphorylated to retinylphosphate (RP), which is then glycosylated to retinylphosphatemannose (MRP). These two derivatives have been found in a variety of tissues in vivo and in vitro and appear to be ubiquitous components of cellular membranes. The suggestion has been made that MRP may mediate specific cellular interactions by functioning as a lipid intermediate in the biosynthesis of specific glycoconjugates. A study on spontaneously-transformed mouse fibroblasts (Balb/c 3T12-3 cells) has shown that retinoids are active in increasing the adhesive properties of these cells as measured in an EDTA-mediated detachment assay. Various retinoids were tested for their activity in the adhesion test, and this activity was found to correlate well with their biological activity in maintaining the expression of normal epithelial differentiation in other systems. Retinoic acid, 5,6-epoxyretinol, and 5,6-epoxyretinoic acid were the most active compounds. Retinoids without biological activity in other systems were also inactive in inducing adhesive properties of 3T12-3 cells. Among these were the synthetic derivatives of retinol, anhydroretinol, and 4,5-monoeneperhydroretinol, and the phenyl derivative of retinoic acid. β-Ionone, abscisic acid, and juvenile hormone, which are devoid of vitamin A activity in other systems, were also inactive in this system. Retinoid-induced changes in cell surface proteins were investigated but no difference in125I-fibronectin (MW 220,000) was detectable between retinoid-treated and untreated cells. However, these cells synthesized retinylphosphatemannose and the incorporation of 2-3H-mannose into a specific glycoprotein (gp 180) was found to be enhanced specifically by retinoid treatment. Investigations of the involvement of gp 180 in adhesion are in progress.
Journal Article