z-logo
Premium
Mutations in the Katnb1 gene cause left–right asymmetry and heart defects
Author(s) -
Furtado Milena B.,
Merriner D. Jo,
Berger Silke,
Rhodes Danielle,
Jamsai Duangporn,
O'Bryan Moira K.
Publication year - 2017
Publication title -
developmental dynamics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.634
H-Index - 141
eISSN - 1097-0177
pISSN - 1058-8388
DOI - 10.1002/dvdy.24564
Subject(s) - biology , microbiology and biotechnology , gastrulation , cilium , conditional gene knockout , zebrafish , microtubule , heart development , gene targeting , knockout mouse , gene , protein subunit , genetics , mitosis , embryogenesis , embryo , embryonic stem cell , phenotype
Background : The microtubule‐severing protein complex katanin is composed two subunits, the ATPase subunit, KATNA1, and the noncatalytic regulatory subunit, KATNB1. Recently, the Katnb1 gene has been linked to infertility, regulation of centriole and cilia formation in fish and mammals, as well as neocortical brain development. KATNB1 protein is expressed in germ cells in humans and mouse, mitotic/meiotic spindles and cilia, although the full expression pattern of the Katnb1 gene has not been described. Results: Using a knockin‐knockout mouse model of Katnb1 dysfunction we demonstrate that Katnb1 is ubiquitously expressed during embryonic development, although a stronger expression is seen in the crown cells of the gastrulation organizer, the murine node. Furthermore, null and hypomorphic Katnb1 gene mutations show a novel correlation between Katnb1 dysregulation and the development of impaired left–right signaling, including cardiac malformations. Conclusions: Katanin function is a critical regulator of heart development in mice. These findings are potentially relevant to human cardiac development. Developmental Dynamics 246:1027–1035, 2017 . © 2017 Wiley Periodicals, Inc.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here