Localization and Activation of the Drosophila Protease Easter Require the ER-Resident Saposin-like Protein Seele
Localization and Activation of the Drosophila Protease Easter Require the ER-Resident Saposin-like Protein Seele
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DOI:
10.1016/j.cub.2010.09.069
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发表时间:
2010-11-09
期刊:
影响因子:
9.2
通讯作者:
Moussian, Bernard
中科院分区:
文献类型:
--
作者:
Stein, David;Charatsi, Iphigenie;Moussian, Bernard
Drosophila embryonic dorsal-ventral polarity is generated by a series of serine protease processing events in the egg perivitelline space. Gastrulation Defective processes Snake, which then cleaves Easter, which then processes Spatz le into the activating ligand for the Toll receptor [1-3]. seele was identified in a screen for mutations that, when homozygous in ovarian germline clones, lead to the formation of progeny embryos with altered embryonic patterning; maternal loss of seele function leads to the production of moderately dorsalized embryos [4]. By combining constitutively active versions of Gastrulation Defective, Snake, Easter, and Spatz le with loss-of-function alleles of seele, we find that See le activity is dispensable for Spatz le-mediated activation of Toll but is required for Easter, Snake, and Gastrulation Defective to exert their effects on dorsal-ventral patterning. Moreover, See le function is required specifically for secretion of Easter from the developing embryo into the perivitelline space and for Easter processing. Seele protein resides in the endoplasmic reticulum of blastoderm embryos, suggesting a role in the trafficking of Easter to the perivitelline space, prerequisite to its processing and function. Easter transport to the perivitelline space represents a previously unappreciated control point in the signal transduction pathway that controls Drosophila embryonic dorsal-ventral polarity.