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    Date Issued2010 - 2012 (1)1987 - 1989 (1)Author
    Williams, David A. (2)
    Agarwal, Suneet (1)Asdourian, George K. (1)Fay, Fredric S. (1)Gagne, Katelyn E. (1)View MoreUMass Chan AffiliationDepartment of Ophthalmology (1)Department of Pediatrics (1)Document TypeJournal Article (2)KeywordBenzofurans; Calcium; Fura-2; Humans; Mathematics; N-Formylmethionine Leucyl-Phenylalanine; Neutrophils (1)Congenital, Hereditary, and Neonatal Diseases and Abnormalities (1)Dyskeratosis Congenita (1)Hemic and Lymphatic Diseases (1)Life Sciences (1)View MoreJournalPediatric blood and cancer (1)The Journal of biological chemistry (1)

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    CTC1 Mutations in a patient with dyskeratosis congenita

    Keller, Rachel B.; Gagne, Katelyn E.; Usmani, G. Naheed; Asdourian, George K.; Williams, David A.; Hofmann, Inga; Agarwal, Suneet (2012-08-01)
    Dyskeratosis congenita (DC) is a rare inherited bone marrow failure syndrome caused by mutations in seven genes involved in telomere biology, with approximately 50% of cases remaining genetically uncharacterized. We report a patient with classic DC carrying a compound heterozygous mutation in the CTC1 (conserved telomere maintenance component 1) gene, which has recently implicated in the pleiotropic syndrome Coats plus. This report confirms a molecular link between DC and Coats plus and expands the genotype-phenotype complexity observed in telomere-related genetic disorders. Pediatr Blood Cancer 2012;59:311-314. (c) 2012 Wiley Periodicals, Inc.
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    A Ca2+-insensitive form of fura-2 associated with polymorphonuclear leukocytes. Assessment and accurate Ca2+ measurement

    Scanlon, Mary; Williams, David A.; Fay, Fredric S. (1987-05-05)
    The new, fluorescent Ca2+ indicator, fura-2, promises to expand our understanding of the role of subcellular changes in Ca2+ underlying cell function. During an investigation of the role of Ca2+ in the polarization response of human polymorphonuclear leukocytes to formyl-methionyl-leucyl-phenylalanine, we found that fura-2 trapped by cells incubated with the acetoxy-methyl ester of fura-2, F2-AM, yielded measurements of Ca2+ that were depressed at rest and during the response to formyl-methionyl-leucyl-phenylalanine. Fura-2, trapped by the cells, exhibited a spectrum in the presence of saturating Ca2+ that differed from that of fura-2 free acid. We have shown that the cellular fluorescence can be spectrally decomposed into two components: one with Ca2+ sensitivity identical to fully deesterified fura-2, and another which is Ca2+-insensitive. The Ca2+-insensitive component appears to be more fluorescent than F2-AM as well as spectrally different from F2-AM. The insensitive form probably results from incomplete deesterification of F2-AM by the cells. In order to accurately measure Ca2+ in polymorphonuclear leukocytes, it is imperative to check for the presence of Ca2+-insensitive fluorescence. The contribution of Ca2+-insensitive fura-2 fluorescence can be assessed routinely from spectral data obtained by calibration of intracellular fura-2 with known [Ca2+] using ionomycin. The end-of-experiment calibration step not only ensures accurate [Ca2+] measurements in polymorphonuclear leukocytes and in other cell types that display Ca2+-insensitive, contaminating fluorescence but also yields the spectral characteristics of the insensitive species.
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