Literature DB >> 23570799

Congenital dyserythropoietic anemia type III (CDA III) is caused by a mutation in kinesin family member, KIF23.

Maria Liljeholm1, Andrew F Irvine, Ann-Louise Vikberg, Anna Norberg, Stacy Month, Herbert Sandström, Anders Wahlin, Masanori Mishima, Irina Golovleva.   

Abstract

Haplotype analysis and targeted next-generation resequencing allowed us to identify a mutation in the KIF23 gene and to show its association with an autosomal dominant form of congenital dyserythropoietic anemia type III (CDA III). The region at 15q23 where CDA III was mapped in a large Swedish family was targeted by array-based sequence capture in a female diagnosed with CDA III and her healthy sister. Prioritization of all detected sequence changes revealed 10 variants unique for the CDA III patient. Among those variants, a novel mutation c.2747C>G (p.P916R) was found in KIF23, which encodes mitotic kinesin-like protein 1 (MKLP1). This variant segregates with CDA III in the Swedish and American families but was not found in 356 control individuals. RNA expression of the 2 known splice isoforms of KIF23 as well as a novel one lacking the exons 17 and 18 was detected in a broad range of human tissues. RNA interference-based knock-down and rescue experiments demonstrated that the p.P916R mutation causes cytokinesis failure in HeLa cells, consistent with appearance of large multinucleated erythroblasts in CDA III patients. We conclude that CDA III is caused by a mutation in KIF23/MKLP1, a conserved mitotic kinesin crucial for cytokinesis.

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Year:  2013        PMID: 23570799     DOI: 10.1182/blood-2012-10-461392

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  33 in total

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10.  TET2 deficiency leads to stem cell factor-dependent clonal expansion of dysfunctional erythroid progenitors.

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