The serpin PN1 is a feedback regulator of FGF signaling in germ layer and primary axis formation

Author:

Acosta Helena1,Iliev Dobromir1,Grahn Tan Hooi Min1,Gouignard Nadège1,Maccarana Marco2,Griesbach Julia1,Herzmann Svende1,Sagha Mohsen13,Climent Maria1,Pera Edgar M.1

Affiliation:

1. Lund Stem Cell Center, Lund University, Lund 221 84, Sweden

2. Department of Experimental Medical Science, Lund University, Lund 221 84, Sweden

3. Department of Anatomical Sciences and Pathology, School of Medicine, Ardabil University of Medical Sciences, Ardabil 56189-53141, Iran

Abstract

Germ layer formation and primary axis development rely on Fibroblast growth factors (FGFs). In Xenopus, the secreted serine protease HtrA1 induces mesoderm and posterior trunk/tail structures by facilitating the spread of FGF signals. Here, we show that the serpin Protease nexin-1 (PN1) is transcriptionally activated by FGF signals, suppresses mesoderm and promotes head development in mRNA-injected embryos. An antisense morpholino oligonucleotide against PN1 has the opposite effect and inhibits ectodermal fate. However, ectoderm and anterior head structures can be restored in PN1-depleted embryos when HtrA1 and FGF receptor activities are diminished, indicating that FGF signals negatively regulate their formation. We show that PN1 binds to and inhibits HtrA1, prevents degradation of the proteoglycan Syndecan 4 and restricts paracrine FGF/Erk signaling. Our data suggest that PN1 is a negative-feedback regulator of FGF signaling and has important roles in ectoderm and head development.

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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