Intellectual disability and abnormal cortical neuron phenotypes in patients with Bloom syndrome
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[1] A. Zibat,et al. Single-cell transcription profiles in Bloom syndrome patients link BLM deficiency with altered condensin complex expression signatures , 2021, bioRxiv.
[2] J. Lemaître,et al. iPSC line derived from a Bloom syndrome patient retains an increased disease-specific sister-chromatid exchange activity. , 2019, Stem cell research.
[3] Robert W. Taylor,et al. Mutations in TOP3A Cause a Bloom Syndrome-like Disorder , 2024, American journal of human genetics.
[4] M. B. Karakullukcu,et al. Bloom syndrome does not always present with sun-sensitive facial erythema. , 2017, European journal of medical genetics.
[5] Q. Pan-Hammarström,et al. Immunodeficiency in Bloom’s Syndrome , 2017, Journal of Clinical Immunology.
[6] D. Amor,et al. Loss of RMI2 Increases Genome Instability and Causes a Bloom-Like Syndrome , 2016, PLoS genetics.
[7] N. Ellis,et al. Bloom's Syndrome: Clinical Spectrum, Molecular Pathogenesis, and Cancer Predisposition , 2016, Molecular Syndromology.
[8] H. Hara,et al. Established Stem Cell Model of Spinal Muscular Atrophy Is Applicable in the Evaluation of the Efficacy of Thyrotropin‐Releasing Hormone Analog , 2016, Stem cells translational medicine.
[9] Katsuhiro Yoshikawa,et al. Modeling Alzheimer's disease with iPSCs reveals stress phenotypes associated with intracellular Aβ and differential drug responsiveness. , 2013, Cell stem cell.
[10] F. Schacherer,et al. Dissecting the genotype in syndromic intellectual disability using whole exome sequencing in addition to genome-wide copy number analysis , 2013, Human Genetics.
[11] H. Turki,et al. Clinical and laboratory findings in 8 patients with Bloom's syndrome. , 2012, Journal of dermatological case reports.
[12] Yasuko Matsumura,et al. A more efficient method to generate integration-free human iPS cells , 2011, Nature Methods.
[13] J. Tischfield,et al. Small scale genetic alterations contribute to increased mutability at the X-linked Hprt locus in vivo in Blm hypomorphic mice. , 2010, DNA repair.
[14] P. Sung,et al. BLAP18/RMI2, a novel OB-fold-containing protein, is an essential component of the Bloom helicase-double Holliday junction dissolvasome. , 2008, Genes & development.
[15] T. Ichisaka,et al. Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors , 2007, Cell.
[16] Shubha Tole,et al. A stream of cells migrating from the caudal telencephalon reveals a link between the amygdala and neocortex , 2007, Nature Neuroscience.
[17] Lei Li,et al. BLAP75, an essential component of Bloom's syndrome protein complexes that maintain genome integrity , 2005, The EMBO journal.
[18] J. Rubenstein,et al. Expression of Dbx1, Neurogenin 2, Semaphorin 5A, Cadherin 8, and Emx1 distinguish ventral and lateral pallial histogenetic divisions in the developing mouse claustroamygdaloid complex , 2004, The Journal of comparative neurology.
[19] T. Masuko,et al. Immunohistochemical expression and pathogenesis of BLM in the human brain and visceral organs , 2001, Neuropathology : official journal of the Japanese Society of Neuropathology.
[20] A. Bradley,et al. Cancer predisposition caused by elevated mitotic recombination in Bloom mice , 2000, Nature Genetics.
[21] N. Ellis,et al. The Bloom's syndrome gene product is homologous to RecQ helicases , 1995, Cell.
[22] J. Rubenstein,et al. T-Brain-1: A homolog of Brachyury whose expression defines molecularly distinct domains within the cerebral cortex , 1995, Neuron.
[23] L. McDaniel,et al. Elevated sister chromatid exchange phenotype of Bloom syndrome cells is complemented by human chromosome 15. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[24] J. German,et al. A manyfold increase in sister chromatid exchanges in Bloom's syndrome lymphocytes. , 1974, Proceedings of the National Academy of Sciences of the United States of America.