The water channel aquaporin-1 partitions into exosomes during reticulocyte maturation: implication for the regulation of cell volume.

Archive ouverte

Blanc, Lionel | Liu, Jing | Vidal, Michel | Chasis, Joel Anne | An, Xiuli | Mohandas, Narla

Edité par CCSD ; American Society of Hematology -

International audience. Aquaporin-1 (AQP-1), the universal water channel, is responsible for rapid response of cell volume to changes in plasma tonicity. In the membrane of the red cell the concentration of the protein is tightly controlled. Here, we show that AQP-1 is partially lost during in vitro maturation of mouse reticulocytes and that it is associated with exosomes, released throughout this process. AQP-1 in young reticulocytes localizes to the plasma membrane and also in endosomal compartments and exosomes, formed both in vitro and in vivo. During maturation a part of the total pool of AQP-1 is differentially sorted and released via the exosomal pathway. A proteasome inhibitor, MG132, suppresses secretion of AQP-1, implying that ubiquitination is a sorting signal for its release. We further show that modulation of medium tonicity in vitro regulates the secretion of AQP-1, thus showing that extracellular osmotic conditions can drive sorting of selected proteins by the exosomal pathway. These results lead us to suggest that AQP-1 sorting into exosomes may be the mechanism by which the reticulocyte adapts to environmental changes during its maturation.

Consulter en ligne

Suggestions

Du même auteur

Abnormal erythroid maturation leads to microcytic anemia in the TSAP6/Steap3 null mouse model

Archive ouverte | Blanc, Lionel | CCSD

International audience. Genetic ablation of the ferrireductase STEAP3, also known as TSAP6, leads to severe microcytic and hypochromic red cells with moderate anemia in the mouse. However, the mechanism leading to a...

Developmental differences between neonatal and adult human erythropoiesis

Archive ouverte | Yan, Hongxia | CCSD

International audience. Studies of human erythropoiesis have relied, for the most part, on the in vitro differentiation of hematopoietic stem and progenitor cells (HSPC) from different sources. Here, we report that ...

An IDH1-vitamin C crosstalk drives human erythroid development by inhibiting pro-oxidant mitochondrial metabolism

Archive ouverte | Gonzalez-Menendez, Pedro | CCSD

International audience. Highlights d Glutamine-dependent OXPHOS drives early erythroid differentiation d OXPHOS-induced ROS inhibit erythroblast enucleation d IDH1 downregulation augments ROS, leading to pathologica...

Chargement des enrichissements...