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Browsing by Author "Morimoto, Marie (54400133600)"

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    Publication
    Lack of IL7Rα expression in T cells is a hallmark of T-cell immunodeficiency in Schimke immuno-osseous dysplasia (SIOD)
    (2015)
    Sanyal, Mrinmoy (55506354600)
    ;
    Morimoto, Marie (54400133600)
    ;
    Baradaran-Heravi, Alireza (24576318700)
    ;
    Choi, Kunho (7403949485)
    ;
    Kambham, Neeraja (6603340119)
    ;
    Jensen, Kent (56316571300)
    ;
    Dutt, Suparna (8323822500)
    ;
    Dionis-Petersen, Kira Y. (56925380200)
    ;
    Liu, Lan Xiang (56923886400)
    ;
    Felix, Katie (56924910800)
    ;
    Mayfield, Christy (36480369200)
    ;
    Dekel, Benjamin (7004279520)
    ;
    Bokenkamp, Arend (7003677203)
    ;
    Fryssira, Helen (6602617953)
    ;
    Guillen-Navarro, Encarna (14028300200)
    ;
    Lama, Giuliana (55298071600)
    ;
    Brugnara, Milena (22984429500)
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    Lücke, Thomas (7004154235)
    ;
    Olney, Ann Haskins (57216387044)
    ;
    Hunley, Tracy E. (6602466725)
    ;
    Polat, Ayse Ipek (56704609600)
    ;
    Yis, Uluc (8688659000)
    ;
    Bogdanovic, Radovan (7004665744)
    ;
    Mitrovic, Katarina (23498072800)
    ;
    Berry, Susan (7201836853)
    ;
    Najera, Lydia (6603294178)
    ;
    Najafian, Behzad (7801350425)
    ;
    Gentile, Mattia (35555538300)
    ;
    Nur Semerci, C. (59158278300)
    ;
    Tsimaratos, Michel (55987886400)
    ;
    Lewis, David B. (7404750928)
    ;
    Boerkoel, Cornelius F. (6701809729)
    Schimke immuno-osseous dysplasia (SIOD) is an autosomal recessive, fatal childhood disorder associated with skeletal dysplasia, renal dysfunction, and T-cell immunodeficiency. This disease is linked to biallelic loss-of-function mutations of the SMARCAL1 gene. Although recurrent infection, due to T-cell deficiency, is a leading cause of morbidity and mortality, the etiology of the T-cell immunodeficiency is unclear. Here, we demonstrate that the T cells of SIOD patients have undetectable levels of protein and mRNA for the IL-7 receptor alpha chain (IL7Rα) and are unresponsive to stimulation with IL-7, indicating a loss of functional receptor. No pathogenic mutations were detected in the exons of IL7R in these patients; however, CpG sites in the IL7R promoter were hypermethylated in SIOD T cells. We propose therefore that the lack of IL7Rα expression, associated with hypermethylation of the IL7R promoter, in T cells and possibly their earlier progenitors, restricts T-cell development in SIOD patients. © 2015 Elsevier Inc.
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    Publication
    Lack of IL7Rα expression in T cells is a hallmark of T-cell immunodeficiency in Schimke immuno-osseous dysplasia (SIOD)
    (2015)
    Sanyal, Mrinmoy (55506354600)
    ;
    Morimoto, Marie (54400133600)
    ;
    Baradaran-Heravi, Alireza (24576318700)
    ;
    Choi, Kunho (7403949485)
    ;
    Kambham, Neeraja (6603340119)
    ;
    Jensen, Kent (56316571300)
    ;
    Dutt, Suparna (8323822500)
    ;
    Dionis-Petersen, Kira Y. (56925380200)
    ;
    Liu, Lan Xiang (56923886400)
    ;
    Felix, Katie (56924910800)
    ;
    Mayfield, Christy (36480369200)
    ;
    Dekel, Benjamin (7004279520)
    ;
    Bokenkamp, Arend (7003677203)
    ;
    Fryssira, Helen (6602617953)
    ;
    Guillen-Navarro, Encarna (14028300200)
    ;
    Lama, Giuliana (55298071600)
    ;
    Brugnara, Milena (22984429500)
    ;
    Lücke, Thomas (7004154235)
    ;
    Olney, Ann Haskins (57216387044)
    ;
    Hunley, Tracy E. (6602466725)
    ;
    Polat, Ayse Ipek (56704609600)
    ;
    Yis, Uluc (8688659000)
    ;
    Bogdanovic, Radovan (7004665744)
    ;
    Mitrovic, Katarina (23498072800)
    ;
    Berry, Susan (7201836853)
    ;
    Najera, Lydia (6603294178)
    ;
    Najafian, Behzad (7801350425)
    ;
    Gentile, Mattia (35555538300)
    ;
    Nur Semerci, C. (59158278300)
    ;
    Tsimaratos, Michel (55987886400)
    ;
    Lewis, David B. (7404750928)
    ;
    Boerkoel, Cornelius F. (6701809729)
    Schimke immuno-osseous dysplasia (SIOD) is an autosomal recessive, fatal childhood disorder associated with skeletal dysplasia, renal dysfunction, and T-cell immunodeficiency. This disease is linked to biallelic loss-of-function mutations of the SMARCAL1 gene. Although recurrent infection, due to T-cell deficiency, is a leading cause of morbidity and mortality, the etiology of the T-cell immunodeficiency is unclear. Here, we demonstrate that the T cells of SIOD patients have undetectable levels of protein and mRNA for the IL-7 receptor alpha chain (IL7Rα) and are unresponsive to stimulation with IL-7, indicating a loss of functional receptor. No pathogenic mutations were detected in the exons of IL7R in these patients; however, CpG sites in the IL7R promoter were hypermethylated in SIOD T cells. We propose therefore that the lack of IL7Rα expression, associated with hypermethylation of the IL7R promoter, in T cells and possibly their earlier progenitors, restricts T-cell development in SIOD patients. © 2015 Elsevier Inc.
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    Publication
    Transcriptional and posttranscriptional mechanisms contribute to the dysregulation of elastogenesis in Schimke immuno-osseous dysplasia
    (2015)
    Morimoto, Marie (54400133600)
    ;
    Wang, Karen J. (57015777600)
    ;
    Yu, Zhongxin (35200189100)
    ;
    Gormley, Andrew K. (12764003600)
    ;
    Parham, David (7102494386)
    ;
    Bogdanovic, Radovan (7004665744)
    ;
    Lücke, Thomas (7004154235)
    ;
    Mayfield, Christy (36480369200)
    ;
    Weksberg, Rosanna (7006112330)
    ;
    Hendson, Glenda (6506856792)
    ;
    Boerkoel, Cornelius F. (6701809729)
    Schimke immuno-osseous dysplasia (SIOD) is an autosomal recessive disorder caused by mutations in SMARCAL1. A frequent complication is arteriosclerosis associated with reduced elastin expression; however, the mechanism underlying the reduced elastin expression remains unknown.METHODS:Expression of transcriptional regulators of elastin (ELN) and microRNA (miRNA) regulators of ELN messenger RNA (mRNA), ELN promoter methylation, and ELN mRNA poly(A) tail length were assessed by quantitative RT-PCR, bisulfite Sanger sequencing, and the Poly(A) Tail Length Assay Kit, respectively, in unaffected developing human aortae and in an SIOD aorta.RESULTS:Comparing unaffected fetal and adult aortae, ELN precursor mRNA (pre-mRNA) levels remained nearly constant, whereas mRNA levels declined by ∼102-fold. This corresponded with a reduction in poly(A) tail length but not with changes in the other parameters. In contrast, compared to the unaffected fetal aortae, the SIOD aorta had 18-fold less ELN pre-mRNA and 10 4-fold less mRNA. This corresponded with increased expression of miRNA regulators and shorter ELN mRNA poly(A) tail lengths but not with altered expression of ELN transcriptional regulators or ELN promoter methylation.CONCLUSION:Posttranscriptional mechanisms account for the reduction in ELN mRNA levels in unaffected aortae, whereas transcriptional and posttranscriptional mechanisms reduce elastin expression in SIOD aorta and predispose to arteriosclerosis. © 2015 International Pediatric Research Foundation, Inc.

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