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Kjaer, S.

Publications and source records attributed to Kjaer, S..

2 recordsLinked to original sources

Comparable affinity of RabGDIα for GTP- and GDP-bound forms of Rab7 supports a four-state transition model for Rab7 subcellular localization

Endolysosomal system is linked to almost all aspects of cell life and diseases, and Rab7 occupies a critical node in this crucial pathway. However, there have been conflicting views about the exact role of Rab7 in membrane trafficking, since some studies have reported that Rab7 regulates the trafficking from early to late endosomes, while others highlighted its role in late endosomes to lysosomes progression. In the present study, we have revisited this issue from a new viewpoint. In COS-7 cells, a GDP-bound Rab7 mutant, T22N, was located to vesicular membranes as well as in cytoplasm. Similarly, the GTPase-deficient Q67L mutant of Rab7 resided in cytoplasm as well as on membranes. Additionally, we found that RabGDI interacted with both GTP- and GDP-bound forms of Rab7 in vitro. These results have prompted us to propose a four-state transition model for Rab7. This four-state model matches with our recent findings that Rab7 was initially recruited to macropinosomes in a GDP-bound inactive form and subsequently became activated during endocytic maturation in EGF-stimulated COS-7 cells.

cell biology

Free ISG15 as a dimer generates IL-1β-producing CD8α+ dendritic cells at the site of infection

ISG15 is strongly induced after type I IFN stimulation producing a protein comprised of two ubiquitin-like domains. Intracellularly, ISG15 can be covalently linked and modify the function of target proteins (ISGylation). In addition, free unconjugated ISG15 can be released from cells. We found that ISG15 is released in the serum of Toxoplasma gondii infected mice early after infection in a type-I IFN independent manner. Once in the extracellular space, free ISG15 forms dimers and enhances the release of key cytokines involved in the immune response to the parasite: IL-12, IFN-{gamma}, and IL-1{beta}. Its action is dependent on an actively invading and replicating live parasite. ISG15 induces an increase of IL-1{beta} later during infection by leading to increased IL-1{beta} producing CD8+ dendritic cells at the site of infection. Here, we define for the first time the molecular determinants of active free ISG15 and link ISG15 to IL-1{beta} production by CD8+ dendritic cells. Thus we define ISG15 as a novel secreted modulator of the cytokine response during Toxoplasma infection.

immunology