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A transphyletic study of metazoan β-catenin protein complexes
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Abstract
β-catenin is essential for various biological processes, such as body axis determination and cell differentiation, during embryonic development in metazoans. β-catenin functions are thought to be exerted through complexes formed with various types of proteins. Although β-catenin complex proteins have been identified in several bilaterians, little is known about the structural and functional properties of β-catenin complexes in early metazoan evolution. In this study, we performed a comparative analysis of β-catenin sequences in nonbilaterian lineages that diverged early in metazoan evolution. We also carried out transphyletic function experiments with β-catenin from nonbilaterian metazoans using developing
Xenopus
embryos, which included secondary axis induction in embryos and proteomic analysis of β-catenin protein complexes. Comparative functional analysis of nonbilaterian β-catenins demonstrated sequence characteristics important for β-catenin functions, and the deep origin and evolutionary conservation of the cadherin-catenin complex. Proteins co-immunoprecipitated with β-catenin included several proteins conserved among metazoans. These data provide new insights into the conserved repertoire of β-catenin complexes.
Title: A transphyletic study of metazoan β-catenin protein complexes
Description:
Abstract
β-catenin is essential for various biological processes, such as body axis determination and cell differentiation, during embryonic development in metazoans.
β-catenin functions are thought to be exerted through complexes formed with various types of proteins.
Although β-catenin complex proteins have been identified in several bilaterians, little is known about the structural and functional properties of β-catenin complexes in early metazoan evolution.
In this study, we performed a comparative analysis of β-catenin sequences in nonbilaterian lineages that diverged early in metazoan evolution.
We also carried out transphyletic function experiments with β-catenin from nonbilaterian metazoans using developing
Xenopus
embryos, which included secondary axis induction in embryos and proteomic analysis of β-catenin protein complexes.
Comparative functional analysis of nonbilaterian β-catenins demonstrated sequence characteristics important for β-catenin functions, and the deep origin and evolutionary conservation of the cadherin-catenin complex.
Proteins co-immunoprecipitated with β-catenin included several proteins conserved among metazoans.
These data provide new insights into the conserved repertoire of β-catenin complexes.
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