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Teneurin Structures Are Composed of Ancient Bacterial Protein Domains.


ABSTRACT: Pioneering bioinformatic analysis using sequence data revealed that teneurins evolved from bacterial tyrosine-aspartate (YD)-repeat protein precursors. Here, we discuss how structures of the C-terminal domain of teneurins, determined using X-ray crystallography and electron microscopy, support the earlier findings on the proteins' ancestry. This chapter describes the structure of the teneurin scaffold with reference to a large family of teneurin-like proteins that are widespread in modern prokaryotes. The central scaffold of modern eukaryotic teneurins is decorated by additional domains typically found in bacteria, which are re-purposed in eukaryotes to generate highly multifunctional receptors. We discuss how alternative splicing contributed to further diversifying teneurin structure and thereby function. This chapter traces the evolution of teneurins from a structural point of view and presents the state-of-the-art of how teneurin function is encoded by its specific structural features.

SUBMITTER: Jackson VA 

PROVIDER: S-EPMC6425310 | biostudies-literature | 2019

REPOSITORIES: biostudies-literature

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Teneurin Structures Are Composed of Ancient Bacterial Protein Domains.

Jackson Verity A VA   Busby Jason N JN   Janssen Bert J C BJC   Lott J Shaun JS   Seiradake Elena E  

Frontiers in neuroscience 20190313


Pioneering bioinformatic analysis using sequence data revealed that teneurins evolved from bacterial tyrosine-aspartate (YD)-repeat protein precursors. Here, we discuss how structures of the C-terminal domain of teneurins, determined using <i>X</i>-ray crystallography and electron microscopy, support the earlier findings on the proteins' ancestry. This chapter describes the structure of the teneurin scaffold with reference to a large family of teneurin-like proteins that are widespread in modern  ...[more]

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