Literature DB >> 18477000

Severe congenital encephalopathy caused by MECP2 null mutations in males: central hypoxia and reduced neuronal dendritic structure.

B Schüle1, D D Armstrong, H Vogel, A Oviedo, U Francke.   

Abstract

Non-mosaic males with a 46,XY karyotype and a MECP2 null mutation display a phenotype of severe neonatal-onset encephalopathy that is distinctly different from Rett syndrome (RTT). To increase awareness of this rare disorder, we are reporting novel findings in a sporadic case, compare them to 16 previously reported cases and establish salient criteria for clinical diagnosis. The proband suffered from general hypotonia and hypoxia caused by hypoventilation and irregular breathing. He developed abnormal movements, seizures and electroencephalogram abnormalities. He failed to thrive and to reach any motor milestones and died at 15 months from central respiratory failure without a diagnosis. In a muscle biopsy, type II fibers were reduced in diameter, indicating central hypoxia. At autopsy, the brain was small with disproportionate reduction of the frontal and temporal lobes. Synaptophysin staining of synaptic vesicles was greatly reduced in cerebellar and spinal cord sections. Analysis of Golgi-stained pyramidal neurons from cortical layers III and V of the frontal and temporal lobes revealed drastically diminished dendritic trees. Post-mortem MECP2 mutation analysis on DNA and RNA from fibroblasts revealed a novel de novo 9-nucleotide deletion including the intron 3/exon 4 splice junction. The two nucleotides flanking the deletion form a new splice site, and the aberrantly spliced transcript lacks seven nucleotides (r.378_384delTCCCCAG), causing a frameshift and premature termination codon (p.I126fsX11). Males with congenital encephalopathy, not females with RTT, represent the true human counterpart for the commonly studied Mecp2-/y mouse model and provide unique insight into the mechanisms of MeCP2 deficiency.

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Year:  2008        PMID: 18477000     DOI: 10.1111/j.1399-0004.2008.01005.x

Source DB:  PubMed          Journal:  Clin Genet        ISSN: 0009-9163            Impact factor:   4.438


  41 in total

Review 1.  Complexities of Rett syndrome and MeCP2.

Authors:  Rodney C Samaco; Jeffrey L Neul
Journal:  J Neurosci       Date:  2011-06-01       Impact factor: 6.167

2.  MeCP2 is critical within HoxB1-derived tissues of mice for normal lifespan.

Authors:  Christopher S Ward; E Melissa Arvide; Teng-Wei Huang; Jong Yoo; Jeffrey L Noebels; Jeffrey L Neul
Journal:  J Neurosci       Date:  2011-07-13       Impact factor: 6.167

3.  Dendritic spine pathologies in hippocampal pyramidal neurons from Rett syndrome brain and after expression of Rett-associated MECP2 mutations.

Authors:  Christopher A Chapleau; Gaston D Calfa; Meredith C Lane; Asher J Albertson; Jennifer L Larimore; Shinichi Kudo; Dawna L Armstrong; Alan K Percy; Lucas Pozzo-Miller
Journal:  Neurobiol Dis       Date:  2009-05-12       Impact factor: 5.996

4.  The array of clinical phenotypes of males with mutations in Methyl-CpG binding protein 2.

Authors:  Jeffrey L Neul; Timothy A Benke; Eric D Marsh; Steven A Skinner; Jonathan Merritt; David N Lieberman; Shannon Standridge; Timothy Feyma; Peter Heydemann; Sarika Peters; Robin Ryther; Mary Jones; Bernhard Suter; Walter E Kaufmann; Daniel G Glaze; Alan K Percy
Journal:  Am J Med Genet B Neuropsychiatr Genet       Date:  2018-12-07       Impact factor: 3.568

5.  A common MECP2 haplotype associates with reduced cortical surface area in humans in two independent populations.

Authors:  Alexander H Joyner; Cooper Roddey J; Cinnamon S Bloss; Trygve E Bakken; Lars M Rimol; Ingrid Melle; Ingrid Agartz; Srdjan Djurovic; Eric J Topol; Nicholas J Schork; Ole A Andreassen; Anders M Dale
Journal:  Proc Natl Acad Sci U S A       Date:  2009-08-26       Impact factor: 11.205

6.  MeCP2 functions largely cell-autonomously, but also non-cell-autonomously, in neuronal maturation and dendritic arborization of cortical pyramidal neurons.

Authors:  Noriyuki Kishi; Jeffrey D Macklis
Journal:  Exp Neurol       Date:  2009-12-16       Impact factor: 5.330

7.  A boy with developmental regression.

Authors:  Kathryn MacLellan; Kellie Davies; Jennifer Fisher; Jean-Francois Lemay
Journal:  Paediatr Child Health       Date:  2018-05-18       Impact factor: 2.253

8.  Neocortical dendritic complexity is controlled during development by NOMA-GAP-dependent inhibition of Cdc42 and activation of cofilin.

Authors:  Marta Rosário; Steffen Schuster; René Jüttner; Srinivas Parthasarathy; Victor Tarabykin; Walter Birchmeier
Journal:  Genes Dev       Date:  2012-07-18       Impact factor: 11.361

9.  Progressive Changes in a Distributed Neural Circuit Underlie Breathing Abnormalities in Mice Lacking MeCP2.

Authors:  Teng-Wei Huang; Mikhail Y Kochukov; Christopher S Ward; Jonathan Merritt; Kaitlin Thomas; Tiffani Nguyen; Benjamin R Arenkiel; Jeffrey L Neul
Journal:  J Neurosci       Date:  2016-05-18       Impact factor: 6.167

10.  Transgenic miR132 alters neuronal spine density and impairs novel object recognition memory.

Authors:  Katelin F Hansen; Kensuke Sakamoto; Gary A Wayman; Soren Impey; Karl Obrietan
Journal:  PLoS One       Date:  2010-11-29       Impact factor: 3.240

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