scholarly journals Glucocorticoids and myosin5b loss of function induce heightened PKA signaling in addition to membrane traffic defects

2019 ◽  
Vol 30 (26) ◽  
pp. 3076-3089 ◽  
Author(s):  
Radia Forteza ◽  
M. Kaimul Ahsan ◽  
Fernando Cartón-García ◽  
Diego Arango ◽  
Nadia A. Ameen ◽  
...  

Loss-of-function mutations in myosin Vb lead to defects in apical membrane traffic in enterocytes in microvillus inclusion disease. This work shows that decreased numbers of apical CFTR molecules are more active for Cl− secretion resulting in profuse diarrhea because of PKA activation in the presence of physiological glucocorticoid concentrations.

2019 ◽  
Vol 156 (6) ◽  
pp. S-1184 ◽  
Author(s):  
Amy C. Engevik ◽  
Alex Coutts ◽  
Colleen LeBlanc ◽  
Milena Saqui-Salces ◽  
Izumi Kaji ◽  
...  

2020 ◽  
Vol 183 (4) ◽  
pp. 1559-1585
Author(s):  
Gleb Grebnev ◽  
Mislav Cvitkovic ◽  
Carolin Fritz ◽  
Giampiero Cai ◽  
Ana-Suncana Smith ◽  
...  

2004 ◽  
Vol 101 (7) ◽  
pp. 1868-1873 ◽  
Author(s):  
D. William Provance ◽  
Christopher R. Gourley ◽  
Colleen M. Silan ◽  
L. C. Cameron ◽  
Kevan M. Shokat ◽  
...  

2019 ◽  
Vol 218 (11) ◽  
pp. 3647-3662 ◽  
Author(s):  
Amy C. Engevik ◽  
Izumi Kaji ◽  
Meagan M. Postema ◽  
James J. Faust ◽  
Anne R. Meyer ◽  
...  

In patients with inactivating mutations in myosin Vb (Myo5B), enterocytes show large inclusions lined by microvilli. The origin of inclusions in small-intestinal enterocytes in microvillus inclusion disease is currently unclear. We postulated that inclusions in Myo5b KO mouse enterocytes form through invagination of the apical brush border membrane. 70-kD FITC-dextran added apically to Myo5b KO intestinal explants accumulated in intracellular inclusions. Live imaging of Myo5b KO–derived enteroids confirmed the formation of inclusions from the apical membrane. Treatment of intestinal explants and enteroids with Dyngo resulted in accumulation of inclusions at the apical membrane. Inclusions in Myo5b KO enterocytes contained VAMP4 and Pacsin 2 (Syndapin 2). Myo5b;Pacsin 2 double-KO mice showed a significant decrease in inclusion formation. Our results suggest that apical bulk endocytosis in Myo5b KO enterocytes resembles activity-dependent bulk endocytosis, the primary mechanism for synaptic vesicle uptake during intense neuronal stimulation. Thus, apical bulk endocytosis mediates the formation of inclusions in neonatal Myo5b KO enterocytes.


Development ◽  
1996 ◽  
Vol 122 (3) ◽  
pp. 951-959 ◽  
Author(s):  
F. Grawe ◽  
A. Wodarz ◽  
B. Lee ◽  
E. Knust ◽  
H. Skaer

Morphogenetic movements of epithelia during development underlie the normal elaboration of the final body plan. The tissue integrity critical for these movements is conferred by anchorage of the cytoskeleton by adherens junctions, initially spot and later belt-like, zonular structures, which encircle the apical side of the cell. Loss-of-function mutations in the Drosophila genes crumbs and stardust lead to the loss of cell polarity in most ectodermally derived epithelia, followed in some, such as the epidermis, by extensive apoptosis. Here we show that both mutants fail to establish proper zonulae adherentes in the epidermis. Our results suggest that the two genes are involved in different aspects of this process. Further, they are compatible with the hypothesis that crumbs delimits the apical border, where the zonula adherens usually forms and where Crumbs protein is normally most abundant. In contrast, stardust seems to be required at an earlier stage for the assembly of the spot adherence junctions. In both mutants, the defect observed at the ultrastructural level are preceded by a misdistribution of Armadillo and DE-cadherin, the homologues of beta-catenin and E-cadherin, respectively, which are two constituents of the vertebrate adherens junctions. Strikingly, expansion of the apical membrane domain in epidermal cells by overexpression of crumbs also abolishes the formation of adherens junctions and results in the disruption of tissue integrity, but without loss of membrane polarity. This result supports the view that membrane polarity is independent of the formation of adherens junctions in epidermal cells.


2004 ◽  
Vol 1014 (1) ◽  
pp. 164-169 ◽  
Author(s):  
JOACHIM FÜLLEKRUG ◽  
KAI SIMONS

2000 ◽  
Vol 11 (1) ◽  
pp. 287-304 ◽  
Author(s):  
Tzuu-Shuh Jou ◽  
Som-Ming Leung ◽  
Linette M. Fung ◽  
Wily G. Ruiz ◽  
W. James Nelson ◽  
...  

Madin-Darby canine kidney (MDCK) cells expressing constitutively active Rac1 (Rac1V12) accumulate a large central aggregate of membranes beneath the apical membrane that contains filamentous actin, Rac1V12, rab11, and the resident apical membrane protein GP-135. To examine the roles of Rac1 in membrane traffic and the formation of this aggregate, we analyzed endocytic and biosynthetic trafficking pathways in MDCK cells expressing Rac1V12 and dominant inactive Rac1 (Rac1N17). Rac1V12 expression decreased the rates of apical and basolateral endocytosis, whereas Rac1N17 expression increased those rates from both membrane domains. Basolateral-to-apical transcytosis of immunoglobulin A (IgA) (a ligand for the polymeric immunoglobulin receptor [pIgR]), apical recycling of pIgR-IgA, and accumulation of newly synthesized GP-135 at the apical plasma membrane were all decreased in cells expressing Rac1V12. These effects of Rac1V12 on trafficking pathways to the apical membrane were the result of the delivery and trapping of these proteins in the central aggregate. In contrast to abnormalities in apical trafficking events, basolateral recycling of transferrin, degradation of EGF internalized from the basolateral membrane, and delivery of newly synthesized pIgR from the Golgi to the basolateral membrane were all relatively unaffected by Rac1V12 expression. Rac1N17 expression had little or no effect on these postendocytic or biosynthetic trafficking pathways. These results show that in polarized MDCK cells activated Rac1 may regulate the rate of endocytosis from both membrane domains and that expression of dominant active Rac1V12 specifically alters postendocytic and biosynthetic membrane traffic directed to the apical, but not the basolateral, membrane.


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