TY - JOUR
T1 - Efficient ER exit and vacuole targeting of yeast Sna2p require two tyrosine-based sorting motifs
AU - Renard, Henri François
AU - Demaegd, Didier
AU - Guerriat, Bérengère
AU - Morsomme, Pierre
PY - 2010/7/1
Y1 - 2010/7/1
N2 - SNA (Sensitive to Na+) proteins form a membrane protein family, which, in the yeast Saccharomyces cerevisiae, is composed of four members: Sna1p/Pmp3p, Sna2p, Sna3p and Sna4p. In this study, we focused on the 79 residue Sna2p protein. We found that Sna2p is localized in the vacuolar membrane. Directed mutagenesis showed that two functional tyrosine motifs YXXØ are present in the C-terminal region. Each of these is involved in a different Golgi-to-vacuole targeting pathway: the tyrosine 65 motif is involved in adaptor protein (AP-1)-dependent targeting, whereas the tyrosine 75 motif is involved in AP-3-dependent targeting. Moreover, our data suggest that these motifs also play a crucial role in the exit of Sna2p from the endoplasmic reticulum (ER). Directed mutagenesis of these tyrosines led to a partial redirection of Sna2p to lipid bodies, probably because of a decrease in ER exit efficiency. Sna2p is the first yeast protein in which two YXXØ motifs have been identified and both were shown to be functional at two different steps of the secretory pathway, ER exit and Golgi-to-vacuole transport.
AB - SNA (Sensitive to Na+) proteins form a membrane protein family, which, in the yeast Saccharomyces cerevisiae, is composed of four members: Sna1p/Pmp3p, Sna2p, Sna3p and Sna4p. In this study, we focused on the 79 residue Sna2p protein. We found that Sna2p is localized in the vacuolar membrane. Directed mutagenesis showed that two functional tyrosine motifs YXXØ are present in the C-terminal region. Each of these is involved in a different Golgi-to-vacuole targeting pathway: the tyrosine 65 motif is involved in adaptor protein (AP-1)-dependent targeting, whereas the tyrosine 75 motif is involved in AP-3-dependent targeting. Moreover, our data suggest that these motifs also play a crucial role in the exit of Sna2p from the endoplasmic reticulum (ER). Directed mutagenesis of these tyrosines led to a partial redirection of Sna2p to lipid bodies, probably because of a decrease in ER exit efficiency. Sna2p is the first yeast protein in which two YXXØ motifs have been identified and both were shown to be functional at two different steps of the secretory pathway, ER exit and Golgi-to-vacuole transport.
KW - Lipid bodies
KW - Secretory pathway
KW - Vacuole
KW - Yeast
KW - YXXØ motif
UR - http://www.scopus.com/inward/record.url?scp=77954710571&partnerID=8YFLogxK
U2 - 10.1111/j.1600-0854.2010.01070.x
DO - 10.1111/j.1600-0854.2010.01070.x
M3 - Article
C2 - 20406419
AN - SCOPUS:77954710571
SN - 1398-9219
VL - 11
SP - 931
EP - 946
JO - Traffic (Copenhagen, Denmark)
JF - Traffic (Copenhagen, Denmark)
IS - 7
ER -