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Evolution and human tissue expression of the Cres/Testatin subgroup genes,a reproductive tissue specific subgroup of the type 2 cystatins
Authors:Jessica Frygelius  Lars Arvestad  Anna Wedell  Virpi Töhönen
Affiliation:1. Department of Molecular Medicine and Surgery, CMM:02, Karolinska Institutet, SE‐171 76 Stockholm, Sweden;2. School of Computer Science and Communication, Royal Institute of Technology (KTH), Stockholm Bioinformatics Center, AlbaNova University Center, SE‐106 91 Stockholm, Sweden;3. Center for Inherited Metabolic Diseases (CMMS), Karolinska University Hospital, SE‐181 46 Stockholm, Sweden;4. Department of Biosciences and Nutrition, Karolinska Institutet, SE‐141 83 Huddinge, Sweden
Abstract:SUMMARY The cystatin family comprises a group of generally broadly expressed protease inhibitors. The Cres/Testatin subgroup (CTES) genes within the type 2 cystatins differs from the classical type 2 cystatins in having a strikingly reproductive tissue‐specific expression, and putative functions in reproduction have therefore been discussed. We have performed evolutionary studies of the CTES genes based on gene searches in genomes from 11 species. Ancestors of the cystatin family can be traced back to plants. We have localized the evolutionary origin of the CTES genes to the split of marsupial and placental mammals. A model for the evolution of these genes illustrates that they constitute a dynamic group of genes, which has undergone several gene expansions and we find indications of a high degree of positive selection, in striking contrast to what is seen for the classical cystatin C. We show with phylogenetic relations that the CTES genes are clustered into three original groups, a testatin, a Cres, and a CstL1 group. We have further characterized the expression patterns of all human members of the subfamily. Of a total of nine identified human genes, four express putative functional transcripts with a predominant expression in the male reproductive system. Our results are compatible with a function of this gene family in reproduction.
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