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Updated: May 1, 2026

Affinity-based Isolation of Tagged Nuclei from Drosophila Tissues for Gene Expression Analysis
Published on: March 25, 2014
Structure of the Toll-Spatzle complex, a molecular hub in Drosophila development and innate immunity
Christoph Parthier1, Marco Stelter, Christian Ursel
1Institut für Biochemie und Biotechnologie and Mitteldeutsches Zentrum für Struktur und Dynamik von Proteinen, Martin-Luther-Universität Halle-Wittenberg, 06120 Halle (Saale), Germany.
Abstract:
Drosophila Toll receptors are involved in embryonic development and the immune response of adult flies. In both processes, the only known Toll receptor ligand is the human nerve growth factor-like cystine knot protein Spätzle. Here we present the crystal structure of a 1:1 (nonsignaling) complex of the full-length Toll receptor ectodomain (ECD) with the Spätzle cystine knot domain dimer. The ECD is divided into two leucine-rich repeat (LRR) domains, each of which is capped by cysteine-rich domains. Spätzle binds to the concave surface of the membrane-distal LRR domain, in contrast to the flanking ligand interactions observed for mammalian Toll-like receptors, with asymmetric contributions from each Spätzle protomer. The structure allows rationalization of existing genetic and biochemical data and provides a framework for targeting the immune systems of insects of economic importance, as well as a variety of invertebrate disease vectors.
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