Exome sequencing analysis of over 2,000 children with complex malformations of cortical development identified five independent (four homozygous and one compound heterozygous) deleterious mutations in KATNB1, encoding the regulatory subunit of the microtubule-severing enzyme Katanin. Mitotic spindle formation is defective in patient-derived fibroblasts, a consequence of disrupted interactions of mutant KATNB1 with KATNA1, the catalytic subunit of Katanin, and other microtubule-associated proteins. Loss of KATNB1 orthologs in zebrafish (katnb1) and flies (kat80) results in microcephaly, recapitulating the human phenotype. In the developing Drosophila optic lobe, kat80 loss specifically affects the asymmetrically dividing neuroblasts, which d...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
International audienceThe genetic causes of malformations of cortical development (MCD) remain large...
Exome sequencing analysis of over 2,000 children with complex malformations of cortical development ...
SummaryExome sequencing analysis of over 2,000 children with complex malformations of cortical devel...
Katanin is a microtubule-severing complex whose catalytic activities are well characterized, but who...
SummaryKatanin is a microtubule-severing complex whose catalytic activities are well characterized, ...
BACKGROUND: The microtubule-severing protein complex katanin is composed two subunits, the ATPase su...
Microtubule severing enzymes implement a diverse range of tissue-specific molecular functions throug...
Human mutations in KATNB1 (p80) cause severe congenital cortical malformations, which encompass the ...
Microtubule severing regulates cytoskeletal rearrangement underlying various cellular functions. Kat...
Microtubule remodeling is critical for cellular and developmental processes underlying morphogenetic...
The katanin family of microtubule-severing enzymes is critical for cytoskeletal rearrangements that ...
International audienceMicrolissencephaly is a rare brain malformation characterized by congenital mi...
Mutations in the WDR62 gene cause primary microcephaly, a pathological condition often associated wi...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
International audienceThe genetic causes of malformations of cortical development (MCD) remain large...
Exome sequencing analysis of over 2,000 children with complex malformations of cortical development ...
SummaryExome sequencing analysis of over 2,000 children with complex malformations of cortical devel...
Katanin is a microtubule-severing complex whose catalytic activities are well characterized, but who...
SummaryKatanin is a microtubule-severing complex whose catalytic activities are well characterized, ...
BACKGROUND: The microtubule-severing protein complex katanin is composed two subunits, the ATPase su...
Microtubule severing enzymes implement a diverse range of tissue-specific molecular functions throug...
Human mutations in KATNB1 (p80) cause severe congenital cortical malformations, which encompass the ...
Microtubule severing regulates cytoskeletal rearrangement underlying various cellular functions. Kat...
Microtubule remodeling is critical for cellular and developmental processes underlying morphogenetic...
The katanin family of microtubule-severing enzymes is critical for cytoskeletal rearrangements that ...
International audienceMicrolissencephaly is a rare brain malformation characterized by congenital mi...
Mutations in the WDR62 gene cause primary microcephaly, a pathological condition often associated wi...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
The Katanin family of microtubule-severing enzymes is critical for remodeling microtubule-based stru...
International audienceThe genetic causes of malformations of cortical development (MCD) remain large...