Molecular mechanisms controlling the biogenesis of the TGF-beta signal Vg1

Citation:

Dingal P, Carte AN, Montague TG, Lim Suan, M. B. J, Schier AF. Molecular mechanisms controlling the biogenesis of the TGF-beta signal Vg1. Proc Natl Acad Sci U S A. 2023;120 (43) :e2307203120.

Abstract:

The TGF-beta signals Vg1 (Dvr1/Gdf3) and Nodal form heterodimers to induce vertebrate mesendoderm. The Vg1 proprotein is a monomer retained in the endoplasmic reticulum (ER) and is processed and secreted upon heterodimerization with Nodal, but the mechanisms underlying Vg1 biogenesis are largely elusive. Here, we clarify the mechanisms underlying Vg1 retention, processing, secretion, and signaling and introduce a Synthetic Processing (SynPro) system that enables the programmed cleavage of ER-resident and extracellular proteins. First, we find that Vg1 can be processed by intra- or extracellular proteases. Second, Vg1 can be processed without Nodal but requires Nodal for secretion and signaling. Third, Vg1-Nodal signaling activity requires Vg1 processing, whereas Nodal can remain unprocessed. Fourth, Vg1 employs exposed cysteines, glycosylated asparagines, and BiP chaperone-binding motifs for monomer retention in the ER. These observations suggest two mechanisms for rapid mesendoderm induction: Chaperone-binding motifs help store Vg1 as an inactive but ready-to-heterodimerize monomer in the ER, and the flexibility of Vg1 processing location allows efficient generation of active heterodimers both intra- and extracellularly. These results establish SynPro as an in vivo processing system and define molecular mechanisms and motifs that facilitate the generation of active TGF-beta heterodimers.

Notes:

Dingal, P C Dave P Carte, Adam N Montague, Tessa G Lim Suan, Medel B Jr Schier, Alexander F eng DP1-HD094764/HHS | National Institutes of Health (NIH)/ UT Dallas Startup Fund/University of Texas at Dallas (UTD)/ 2023/10/16 Proc Natl Acad Sci U S A. 2023 Oct 24;120(43):e2307203120. doi: 10.1073/pnas.2307203120. Epub 2023 Oct 16.

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