4.7 Article

Gene conversion and the evolution of protocadherin gene cluster diversity

Journal

GENOME RESEARCH
Volume 14, Issue 3, Pages 354-366

Publisher

COLD SPRING HARBOR LAB PRESS, PUBLICATIONS DEPT
DOI: 10.1101/gr.2133704

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Funding

  1. NHGRI NIH HHS [P50 HG002568, 5 T32 HG00044, 1 P50 HG 02568-01, T32 HG000044] Funding Source: Medline

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The synaptic cell adhesion molecules encoded by the protocadherin gene Cluster are hypothesized to provide a molecular code involved in the generation of synaptic complexity ill the developing brain. Variation ill COPY number and sequence content of protocadherin cluster genes among vertebrate species Could reflect adaptive differences in protocadherin function. We have completed ail analysis of zebrafish protocadherin cluster genes. Zebrafish have two unlinked protocadherin Clusters, DrPcdhl and DrPcdh2. Like mammalian protocadherin Clusters, DrPcdhl has both alpha and gamma variable and constant region exons. A consensus protocadherin promoter motif sequence identified ill mammals is also conserved ill zebrafish. Few orthologous relationships, however, are apparent between zebrafish and mammalian protocadherin proteins. Here we show that protocadherin Cluster genes ill human, mouse, rat, and zebrafish are Subject to striking gene conversion events. These events are restricted to regions of the coding sequence, particularly the coding sequences of ectodomain 6 and the cytoplasmic domain. Diversity among paralogs is restricted to particular ectodomains that are excluded from conversion events. Conversion events are also strongly correlated with an increase in third-position GC content. We propose that the combination of lineage-specific duplication, restricted gene conversion, and adaptive variation in diversified ectodomains drives vertebrate protocadherin cluster evolution.

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