We present the binary phase diagram of the system
dodecaoxyethylene mono-n-dodecyl ether
(C12EO12)/water, which is the first pure surfactant system found
to exhibit three different type I (oil-in-water)
micellar cubic phases. As hydration increases the hexagonal,
HI, phase transforms into a cubic, I1,
phase
of space group Pm3n, which, on further hydration,
forms a second micellar cubic phase of space group
Im3m (phase designated as Im3m). In
addition, a third micellar cubic phase, of space group
Fm3m, forms
at low temperature and high hydration, adjacent to the L1
micellar solution. We have succeeded in growing
monodomains of the hexagonal, and some of these cubic phases and have
thereby investigated the epitaxial
relationships between the phases. The results suggest an
“undulating cylinder” mechanism for the Im3m−HI transition.
Secretory granule (SG) maturation has been proposed to involve formation of clathrin-coated vesicles (CCVs) from immature SGs (ISGs). We tested the effect of inhibiting CCV budding by using the clathrin adaptor GGA (Golgi-associated, c-ear-containing, ADP-ribosylation factor-binding protein) on SG maturation in neuroendocrine cells. Overexpression of a truncated, GFP-tagged GGA, VHS (Vps27, Hrs, Stam)-GAT (GGA and target of myb (TOM))-GFP led to retention of MPR, VAMP4, and syntaxin 6 in mature SGs (MSGs), suggesting that CCV budding from ISGs is inhibited by the SG-localizing VHS-GAT-GFP. Furthermore, VHS-GAT-GFP-overexpression disrupts prohormone convertase 2 (PC2) autocatalytic cleavage, processing of secretogranin II to its product p18, and the correlation between PC2 and p18 levels. All these effects were not observed if full-length GGA1-GFP was overexpressed. Neither GGA1-GFP nor VHS-GAT-GFP perturbed SG protein budding from the TGN, or homotypic fusion of ISGs. Reducing GGA3 levels by using short interfering (si)RNA also led to VAMP4 retention in SGs, and inhibition of PC2 activity. Our results suggest that inhibition of CCV budding from ISGs downregulates the sorting from the ISGs and perturbs the intragranular activity of PC2.
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