Literature DB >> 22402506

The amphioxus genome provides unique insight into the evolution of immunity.

Larry J Dishaw1, Robert N Haire, Gary W Litman.   

Abstract

Immune systems evolve as essential strategies to maintain homeostasis with the environment, prevent microbial assault and recycle damaged host tissues. The immune system is composed of two components, innate and adaptive immunity. The former is common to all animals while the latter consists of a vertebrate-specific system that relies on somatically derived lymphocytes and is associated with near limitless genetic diversity as well as long-term memory. Deuterostome invertebrates provide a view of immune repertoires in phyla that immediately predate the origins of vertebrates. Genomic studies in amphioxus, a cephalochordate, have revealed homologs of genes encoding most innate immune receptors found in vertebrates; however, many of the gene families have undergone dramatic expansions, greatly increasing the innate immune repertoire. In addition, domain-swapping accounts for the innovation of new predicted pathways of receptor function. In both amphioxus and Ciona, a urochordate, the VCBPs (variable region containing chitin-binding proteins), which consist of immunoglobulin V (variable) and chitin binding domains, mediate recognition through the V domains. The V domains of VCBPs in amphioxus exhibit high levels of allelic complexity that presumably relate to functional specificity. Various features of the amphioxus immune repertoire reflect novel selective pressures, which likely have resulted in innovative strategies. Functional genomic studies underscore the value of amphioxus as a model for studying innate immunity and may help reveal how unique relationships between innate immune receptors and both pathogens and symbionts factored in the evolution of adaptive immune systems.

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Year:  2012        PMID: 22402506      PMCID: PMC3310213          DOI: 10.1093/bfgp/els007

Source DB:  PubMed          Journal:  Brief Funct Genomics        ISSN: 2041-2649            Impact factor:   4.241


  62 in total

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Review 8.  The role of TLRs, NLRs, and RLRs in mucosal innate immunity and homeostasis.

Authors:  E C Lavelle; C Murphy; L A J O'Neill; E M Creagh
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Journal:  J Biol Chem       Date:  2009-08-03       Impact factor: 5.157

10.  Novel genes dramatically alter regulatory network topology in amphioxus.

Authors:  Qing Zhang; Christian M Zmasek; Larry J Dishaw; M Gail Mueller; Yuzhen Ye; Gary W Litman; Adam Godzik
Journal:  Genome Biol       Date:  2008-08-04       Impact factor: 13.583

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3.  Gut immunity in a protochordate involves a secreted immunoglobulin-type mediator binding host chitin and bacteria.

Authors:  Larry J Dishaw; Brittany Leigh; John P Cannon; Assunta Liberti; M Gail Mueller; Diana P Skapura; Charlotte R Karrer; Maria R Pinto; Rosaria De Santis; Gary W Litman
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Review 4.  Pathogen-Derived Carbohydrate Recognition in Molluscs Immune Defense.

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5.  Phagocytic intracellular digestion in amphioxus (Branchiostoma).

Authors:  Chunpeng He; Tingyu Han; Xin Liao; Yuxin Zhou; Xiuqiang Wang; Rui Guan; Tian Tian; Yixin Li; Changwei Bi; Na Lu; Ziyi He; Bing Hu; Qiang Zhou; Yue Hu; Zuhong Lu; J-Y Chen
Journal:  Proc Biol Sci       Date:  2018-06-13       Impact factor: 5.349

6.  The transcriptome of an amphioxus, Asymmetron lucayanum, from the Bahamas: a window into chordate evolution.

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Journal:  Genome Biol Evol       Date:  2014-09-19       Impact factor: 3.416

7.  Whole-Genome Resequencing of Twenty Branchiostoma belcheri Individuals Provides a Brand-New Variant Dataset for Branchiostoma.

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Journal:  Biomed Res Int       Date:  2020-01-24       Impact factor: 3.411

Review 8.  Beyond Adult Stem Cells: Dedifferentiation as a Unifying Mechanism Underlying Regeneration in Invertebrate Deuterostomes.

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  8 in total

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