Abstract

BackgroundSmall GTPases of the Rab family can cycle between a GTP- and a GDP-bound state and also between membrane and cytosol. The latter cycle is mediated by the Guanine Nucleotide Dissociation Inhibitor GDI, which can selectively extract GDP-bound Rab proteins from donor membranes, and then reload them on target membranes. In previous studies, we found that capture of the small GTPase Rab5, a key regulator of endocytic membrane traffic, by GDI is stimulated by oxidative stress via p38MAPK, resulting in increased fluid phase endocytosis.Methodology/Principal FindingsWhen purifying the GDI stimulating activity we found that that it copurified with a high MW protein complex, which included p38MAPK. Here we report the identification and characterization of another component of this complex as the thioredoxin-like protein TXNL1. Our observations indicate that TXNL1 play a selective role in the regulation of fluid phase endocytosis, by controlling GDI capacity to capture Rab5.Conclusions/SignificanceOxidants, which are known to cause cellular damage, can also trigger signaling pathways, in particular via members of the thioredoxin family. We propose that TXNL1 acts as an effector of oxidants or a redox sensor by converting redox changes into changes of GDI capacity to capture Rab5, which in turn modulates fluid phase endocytosis.

Highlights

  • Cellular uptake of particles, solutes, lipids, and membrane proteins, including receptor–ligand complexes is mediated by clathrindependent endocytosis, macropinocytosis and by other pathways, in particular rafts and caveolae [1,2]

  • We report that the thioredoxin-like protein TXNL1 modulates Guanine nucleotide Dissociation Inhibitor (GDI) functions in the cycle of Rab5 and regulates fluid phase endocytosis

  • We report that the thioredoxin-like protein TXNL1, which can be associated with p38MAPK, modulates GDI functions in the cycle of Rab5 and regulates fluid phase endocytosis

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Summary

Background

Small GTPases of the Rab family can cycle between a GTP- and a GDP-bound state and between membrane and cytosol. The latter cycle is mediated by the Guanine Nucleotide Dissociation Inhibitor GDI, which can selectively extract GDPbound Rab proteins from donor membranes, and reload them on target membranes. We found that capture of the small GTPase Rab, a key regulator of endocytic membrane traffic, by GDI is stimulated by oxidative stress via p38MAPK, resulting in increased fluid phase endocytosis. Our observations indicate that TXNL1 play a selective role in the regulation of fluid phase endocytosis, by controlling GDI capacity to capture Rab.

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