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Featured researches published by Ndona N. Nsumu.


Genomics | 2010

Mutation in erythroid specific transcription factor KLF1 causes Hereditary Spherocytosis in the Nan hemolytic anemia mouse model

Daniel P. Heruth; Troy Hawkins; Derek P. Logsdon; Margaret Gibson; Inna Sokolovsky; Ndona N. Nsumu; Stephanie Major; Barbara Fegley; Gerald M. Woods; Karen Lewing; Kathleen Neville; Kenneth Cornetta; Kenneth R. Peterson; Robert A. White

KLF1 regulates definitive erythropoiesis of red blood cells by facilitating transcription through high affinity binding to CACCC elements within its erythroid specific target genes including those encoding erythrocyte membrane skeleton (EMS) proteins. Deficiencies of EMS proteins in humans lead to the hemolytic anemia Hereditary Spherocytosis (HS) which includes a subpopulation with no known genetic defect. Here we report that a mutation, E339D, in the second zinc finger domain of KLF1 is responsible for HS in the mouse model Nan. The causative nature of this mutation was verified with an allelic test cross between Nan/+ and heterozygous Klf1(+/-) knockout mice. Homology modeling predicted Nan KLF1 binds CACCC elements more tightly, suggesting that Nan KLF1 is a competitive inhibitor of wild-type KLF1. This is the first association of a KLF1 mutation with a disease state in adult mammals and also presents the possibility of being another causative gene for HS in humans.


Neuromuscular Disorders | 2006

Improvement in survival and muscle function in an mdx/utrn−/− double mutant mouse using a human retinal dystrophin transgene

Roger Gaedigk; Douglas J. Law; Kathleen M. Fitzgerald-Gustafson; Steven G. McNulty; Ndona N. Nsumu; Ann Modrcin; Robert J. Rinaldi; David M. Pinson; Stephen C. Fowler; Mehmet Bilgen; Joanne Burns; Stephen D. Hauschka; Robert A. White

Duchenne muscular dystrophy is a progressive muscle disease characterized by increasing muscle weakness and death by the third decade. mdx mice exhibit the underlying muscle disease but appear physically normal with ordinary lifespans, possibly due to compensatory expression of utrophin. In contrast, double mutant mice (mdx/utrn(-/-)), deficient for both dystrophin and utrophin die by approximately 3 months and suffer from severe muscle weakness, growth retardation, and severe spinal curvature. The capacity of human retinal dystrophin (Dp260) to compensate for the missing 427 kDa muscle dystrophin was tested in mdx/utrn(-/-) mice. Functional outcomes were assessed by histology, EMG, MRI, mobility, weight and longevity. MCK-driven transgenic expression of Dp260 in mdx/utrn(-/-) mice converts their disease course from a severe, lethal muscular dystrophy to a viable, mild myopathic phenotype. This finding is relevant to the design of exon-skipping therapeutic strategies since Dp260 lacks dystrophin exons 1-29.


Blood Cells Molecules and Diseases | 2009

Hematologic characterization and chromosomal localization of the novel dominantly inherited mouse hemolytic anemia, neonatal anemia (Nan)

Robert A. White; Inna Sokolovsky; Margaret I. Britt; Ndona N. Nsumu; Derek P. Logsdon; Steven G. McNulty; Leigh A. Wilmes; Brandon P. Brewer; Eric Wirtz; Heather R. Joyce; Barbara Fegley; Ann Smith; Daniel P. Heruth

One of the most commonly inherited anemias in man is Hereditary Spherocytosis (HS) with an incidence of 1 in 2000 for persons of Northern European descent. Mouse models of HS include spontaneous inherited hemolytic anemias and those generated by gene targeting. The Neonatal anemia (Nan) mouse is a novel model of HS generated by N-ethyl-N-nitrosurea mutagenesis and suffers from a severe neonatal anemia. Adult Nan mice have a lifelong hemolytic anemia with decreased red blood cell numbers, hematocrit, and hemoglobin, but elevated zinc protoporphyrin levels. Blood smears taken from Nan mice show a hypochromic anemia characterized by poikilocytosis, anisocytosis and polychromasia. The Nan phenotype can be transferred by bone marrow transplantation indicating that the defect is intrinsic to bone marrow. The hemolytic anemia in adult Nan mice can be identified by osmotic fragility testing. Examination of the erythrocyte membrane skeleton proteins (EMS) reveals a global deficiency of these proteins with protein 4.1a being completely absent. The Nan locus maps to mouse Chromosome 8 and does not co-localize with any known EMS genes. The identification of the Nan gene will likely uncover a novel protein that contributes to the stability of the EMS and may identify a new mutation for HS.


Genomics | 2005

Iron metabolism mutant hbd mice have a deletion in Sec15l1, which has homology to a yeast gene for vesicle docking.

Robert A. White; Leigh A. Boydston; Terri R. Brookshier; Steven G. McNulty; Ndona N. Nsumu; Brandon P. Brewer; Krista Blackmore


Genomics | 2005

Positional cloning of the Ttc7 gene required for normal iron homeostasis and mutated in hea and fsn anemia mice

Robert A. White; Steven G. McNulty; Ndona N. Nsumu; Leigh A. Boydston; Brandon P. Brewer; Koji Shimizu


Blood | 2004

Chromosomal localization, hematologic characterization, and iron metabolism of the hereditary erythroblastic anemia (hea) mutant mouse

Robert A. White; Steven G. McNulty; Shelly Roman; Uttam Garg; Eric Wirtz; Deanna Kohlbrecher; Ndona N. Nsumu; David M. Pinson; Roger Gaedigk; Krista Blackmore; Angela Copple; Sidrah Rasul; Masayo Watanabe; Koji Shimizu


Archive | 2013

Metabolism of the Hereditary Erythroblastic Anemia (hea) Mutant Mouse Chromosomal Localization, Hematological Characterization, and Iron

Koji Shimizu; Ndona N. Nsumu; David M. Pinson; Roger Gaedigk; Krista Blackmore; Angela Copple; Robert A. White; Shelly Roman; Uttam Garg; Eric Wirtz; Deanna Kohlbrecher


american thoracic society international conference | 2012

Analyses Of Haplotypes Within The Proximal Promoter Of Human Nampt Gene

Daniel P. Heruth; Li Q. Zhang; Inna Sokolovsky; Ndona N. Nsumu; Dan Wu; Shui Q. Ye


Blood | 2011

The Xla (X-linked anemia) Mouse: A Transient Neonatal Anemia Caused by a Gata1 Splicing Mutation,

Kyle Miller; Michael Silvey; Derek Logsdon; Frederick Balch; Ndona N. Nsumu; Inna Sokolovsky; Margaret Gibson; Chengpeng Bi; Daniel P. Heruth; Robert A. White


Blood | 2010

Mutation In Erythroid Specific Transcription Factor KLF1 Causes Hereditary Spherocytosis In the Nan (Neonatal Anemia) Hemolytic Anemia Mouse Model

Robert A. White; Daniel P. Heruth; Troy Hawkins; Derek Logsdon; Margaret Gibson; Inna Sokolovsky; Ndona N. Nsumu; Stephanie Major; Barbara Fegley; Gerald M. Woods; Karen Lewing; Kathleen Neville; Kenneth Cornetta; Kenneth R. Peterson

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Robert A. White

Children's Mercy Hospital

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Steven G. McNulty

University of Missouri–Kansas City

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Daniel P. Heruth

University of Missouri–Kansas City

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Inna Sokolovsky

Children's Mercy Hospital

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Brandon P. Brewer

University of Missouri–Kansas City

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Krista Blackmore

University of Missouri–Kansas City

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Eric Wirtz

Children's Mercy Hospital

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Leigh A. Boydston

University of Missouri–Kansas City

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