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  • 1
    ISSN: 1432-1076
    Keywords: Key words Chromosome 22q11.2 microdeletions ; Congenital heart disease ; Conotruncal heart defect ; DiGeorge anomaly
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: Abstract Conotruncal malformations account for about 50% of congenital heart defects diagnosed in newborns. We studied prospectively 104 patients admitted in our neonatal intensive care unit for conotruncal defects by fluorescence in situ hybridization to estimate the prevalence of the interstitial deletion in this category of congenital heart disease. Cardiac phenotypes were: truncus arteriosus (17), interrupted aortic arch (18), tetralogy of Fallot with or without pulmonary valve atresia (55), tetralogy of Fallot with absent pulmonary valves (5), ventricular septal defect with malalignment of the conal septum (9). We discovered a microdeletion 22q11 at loci D22S39 or D22S398 in 50 newborns (48%). The prevalence of this microdeletion in different groups of conotruncal defects was: truncus arteriosus 7/17, interrupted aortic arch 16/18, tetralogy of Fallot 19/55, absent pulmonary valves 2/5, and ventricular septal defect 6/9 respectively. Only two patients without any clinical or biological feature of the so called CATCH22 syndrome exhibited the deletion. Parental studies confirmed that the deletion occurred de novo in 47/50 cases (three parental microdeletions). On the other hand, recurrence of conotruncal heart defects in families of “undeleted probands” was higher than expected (13%). Conclusion In 50/104 newborns with conotruncal defects, an interstitial deletion 22q11 was found. Fluorescence in Situ Hybridization should be performed in newborn infants with conotruncal defect and at least one additional manifestation of the CATCH22 phenotype.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2016-10-21
    Description: The ataxia telangiectasia mutated (ATM)-interacting protein ATMIN mediates noncanonical ATM signaling in response to oxidative and replicative stress conditions. Like ATM, ATMIN can function as a tumor suppressor in the hematopoietic system: deletion of Atmin under the control of CD19-Cre results in B-cell lymphomas in aging mice. ATM signaling is essential for lymphopoiesis and hematopoietic stem cell (HSC) function; however, little is known about the role of ATMIN in hematopoiesis. We thus sought to investigate whether the absence of ATMIN would affect primitive hematopoietic cells in an ATM-dependent or -independent manner. Apart from its role in B-cell development, we show that ATMIN has an ATM-independent function in the common myeloid progenitors (CMPs) by deletion of Atmin in the entire hematopoietic system using Vav-Cre. Despite the lack of lymphoma formation, ATMIN-deficient mice developed chronic leukopenia as a result of high levels of apoptosis in B cells and CMPs and induced a compensatory mechanism in which HSCs displayed enhanced cycling. Consequently, ATMIN-deficient HSCs showed impaired regeneration ability with the induction of the DNA oxidative stress response, especially when aged. ATMIN, therefore, has multiple roles in different cell types, and its absence results in perturbed hematopoiesis, especially during stress conditions and aging.
    Keywords: Hematopoiesis and Stem Cells, Brief Reports
    Print ISSN: 0006-4971
    Electronic ISSN: 1528-0020
    Topics: Biology , Medicine
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