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The Essential Role of Centrosomal NDE1 in Human Cerebral Cortex Neurogenesis
Author(s)
Mehmet Bakircioglu
Ofe´lia P. Carvalho
Maryam Khurshid Department of Biochemistry, Institute of Biochemistry, Biotechnology and Bioinformatics (IBBB), The Islamia University of Bahawalpur, Bahawalpur, Pakistan
James J. Cox, Beyhan Tuysuz
Tanyeri Barak
Saliha Yilmaz
Okay Caglayan
Alp Dincer
Adeline K. Nicholas
Oliver Quarrell
Kelly Springell
Gulshan Karbani
Saghira Malik
Caroline Gannon
Eamonn Sheridan
Moira Crosier
Steve N. Lisgo
Susan Lindsay
Kaya Bilguvar
Fanni Gergely
Murat Gunel Biochemistry, Institute of Biochemistry, Biotechnology and Bioinformatics (IBBB), The Islamia University of Bahawalpur, Bahawalpur, Pakistan
C. Geoffrey Woods
Abstract
We investigated three families whose offspring had extreme microcephaly at birth and profound mental retardation. Brain scans and postmortem data showed that affected individuals had brains less than 10% of expected size (%10 standard deviation) and that in addition to a massive reduction in neuron production they displayed partially deficient cortical lamination (microlissencephaly). Other body systems were apparently unaffected and overall growth was normal. We found two distinct homozygous mutations of NDE1, c.83þ1G>T (p.Ala29GlnfsX114) in a Turkish family and c.684_685del (p.Pro229TrpfsX85) in two families of Pakistani origin. Using patient cells, we found that c.83þ1G>T led to the use of a novel splice site and to a frameshift after NDE1 exon 2. Transfection of tagged NDE1 constructs showed that the c.684_685del mutation resulted in a NDE1 that was unable to localize to the centrosome. By staining a patient-derived cell line that carried the c.83þ1G>T mutation, we found that this endogeneously expressed mutated protein equally failed to localize to the centrosome. By examining human and mouse embryonic brains, we determined that NDE1 is highly expressed in neuroepithelial cells of the developing cerebral cortex, particularly at the centrosome. We show that NDE1 accumulates on the mitotic spindle of apical neural precursors in early neurogenesis. Thus, NDE1 deficiency causes both a severe failure of neurogenesis and a deficiency in cortical lamination. Our data further highlight the importance of the centrosome in multiple aspects of neurodevelopment.
Publication Details
Page(s) 58-58
DOI DOI not available
Published Journal: Abstract Book on Global Science Technology and Management Conference, Volume: 0, Issue: 0, Year: 2023
Keywords
Human Cerebral Cortex Neurogenesis Centrosomal NDE1
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