Literature DB >> 25921236

Exome sequencing of patients with histiocytoid cardiomyopathy reveals a de novo NDUFB11 mutation that plays a role in the pathogenesis of histiocytoid cardiomyopathy.

Bahig M Shehata1, Caitlin A Cundiff1,2, Kevin Lee2, Ankit Sabharwal3,4, Mukesh Kumar Lalwani3, Angela K Davis1, Vartika Agrawal2, Sridhar Sivasubbu3,4, Glen J Iannucci1, Greg Gibson1,2.   

Abstract

Histiocytoid cardiomyopathy (Histiocytoid CM) is a rare form of cardiomyopathy observed predominantly in newborn females that is fatal unless treated early in life. We have performed whole exome sequencing on five parent-proband trios and identified nuclear-encoded mitochondrial protein mutations in three cases. The molecular genetic basis of Histiocytoid CM remains unknown despite several hypotheses in medical literature. The findings presented in this manuscript may represent components of genetic etiologies for this heterogeneous disease. Two probands had de novo non-sense mutations in the second exon of the X-linked nuclear gene NDUFB11. A third proband was doubly heterozygous for inherited rare variants in additional components of complex I, NDUFAF2 and NDUFB9, confirming that Histiocytoid CM is genetically heterogeneous. In a fourth case, the proband with Histiocytoid CM inherited a mitochondrial mutation from her heteroplasmic mother, as did her brother who presented with cardiac arrhythmia. Strong candidate recessive or compound heterozygous variants were not found for this individual or for the fifth case. Although NDUFB11 has not been implicated before in cardiac pathology, morpholino-mediated knockdown of ndufb11 in zebrafish embryos generated defective cardiac tissue with cardiomegaly, looping defects, and arrhythmia which suggests the role of NDUFB11 in the pathogenesis of this abnormal cardiac pathology. Taken together, the unbiased whole exome sequencing approach confirms the suspected genetic heterogeneity of Histiocytoid CM. Therefore, the novel NDUFB11 mutation may cause a complex 1 deficiency in synergy with additional unknown mtDNA variants.
© 2015 Wiley Periodicals, Inc.

Entities:  

Keywords:  NDUFB11; de novo mutation; histiocytoid cardiomyopathy; morpholinos; whole exome sequencing; zebrafish

Mesh:

Substances:

Year:  2015        PMID: 25921236      PMCID: PMC4753789          DOI: 10.1002/ajmg.a.37138

Source DB:  PubMed          Journal:  Am J Med Genet A        ISSN: 1552-4825            Impact factor:   2.802


  37 in total

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Review 2.  Iron metabolism in erythroid cells and patients with congenital sideroblastic anemia.

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3.  A recurring mutation in the respiratory complex 1 protein NDUFB11 is responsible for a novel form of X-linked sideroblastic anemia.

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Journal:  Blood       Date:  2016-08-03       Impact factor: 22.113

4.  Accessory subunits are integral for assembly and function of human mitochondrial complex I.

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Review 5.  Linear Skin Defects with Multiple Congenital Anomalies (LSDMCA): An Unconventional Mitochondrial Disorder.

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Authors:  Gillian Rea; Tessa Homfray; Jan Till; Ferran Roses-Noguer; Rachel J Buchan; Sam Wilkinson; Alicja Wilk; Roddy Walsh; Shibu John; Shane McKee; Fiona J Stewart; Victoria Murday; Robert W Taylor; Michael Ashworth; A John Baksi; Piers Daubeney; Sanjay Prasad; Paul J R Barton; Stuart A Cook; James S Ware
Journal:  Cold Spring Harb Mol Case Stud       Date:  2017-01

Review 7.  Analysis of Human Mutations in the Supernumerary Subunits of Complex I.

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Review 8.  An Overview of Mitochondrial Protein Defects in Neuromuscular Diseases.

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9.  A Primer Genetic Toolkit for Exploring Mitochondrial Biology and Disease Using Zebrafish.

Authors:  Ankit Sabharwal; Jarryd M Campbell; Tanya L Schwab; Zachary WareJoncas; Mark D Wishman; Hirotaka Ata; Wiebin Liu; Noriko Ichino; Danielle E Hunter; Jake D Bergren; Mark D Urban; Rhianna M Urban; Shannon R Holmberg; Bibekananda Kar; Alex Cook; Yonghe Ding; Xiaolei Xu; Karl J Clark; Stephen C Ekker
Journal:  Genes (Basel)       Date:  2022-07-23       Impact factor: 4.141

  9 in total

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