TY - JOUR
T1 - Golgi maturation-dependent glycoenzyme recycling controls glycosphingolipid biosynthesis and cell growth via GOLPH3
AU - Rizzo, Riccardo
AU - Russo, Domenico
AU - Kurokawa, Kazuo
AU - Sahu, Pranoy
AU - Lombardi, Bernadette
AU - Supino, Domenico
AU - Zhukovsky, Mikhail A.
AU - Vocat, Anthony
AU - Pothukuchi, Prathyush
AU - Kunnathully, Vidya
AU - Capolupo, Laura
AU - Boncompain, Gaelle
AU - Vitagliano, Carlo
AU - Zito Marino, Federica
AU - Aquino, Gabriella
AU - Montariello, Daniela
AU - Henklein, Petra
AU - Mandrich, Luigi
AU - Botti, Gerardo
AU - Clausen, Henrik
AU - Mandel, Ulla
AU - Yamaji, Toshiyuki
AU - Hanada, Kentaro
AU - Budillon, Alfredo
AU - Perez, Franck
AU - Parashuraman, Seetharaman
AU - Hannun, Yusuf A.
AU - Nakano, Akihiko
AU - Corda, Daniela
AU - D’Angelo, Giovanni
AU - Luini, Alberto
N1 - Publisher Copyright:
© 2021 The Authors
PY - 2021/4/15
Y1 - 2021/4/15
N2 - Glycosphingolipids are important components of the plasma membrane where they modulate the activities of membrane proteins including signalling receptors. Glycosphingolipid synthesis relies on competing reactions catalysed by Golgi-resident enzymes during the passage of substrates through the Golgi cisternae. The glycosphingolipid metabolic output is determined by the position and levels of the enzymes within the Golgi stack, but the mechanisms that coordinate the intra-Golgi localisation of the enzymes are poorly understood. Here, we show that a group of sequentially-acting enzymes operating at the branchpoint among glycosphingolipid synthetic pathways binds the Golgi-localised oncoprotein GOLPH3. GOLPH3 sorts these enzymes into vesicles for intra-Golgi retro-transport, acting as a component of the cisternal maturation mechanism. Through these effects, GOLPH3 controls the sub-Golgi localisation and the lysosomal degradation rate of specific enzymes. Increased GOLPH3 levels, as those observed in tumours, alter glycosphingolipid synthesis and plasma membrane composition thereby promoting mitogenic signalling and cell proliferation. These data have medical implications as they outline a novel oncogenic mechanism of action for GOLPH3 based on glycosphingolipid metabolism.
AB - Glycosphingolipids are important components of the plasma membrane where they modulate the activities of membrane proteins including signalling receptors. Glycosphingolipid synthesis relies on competing reactions catalysed by Golgi-resident enzymes during the passage of substrates through the Golgi cisternae. The glycosphingolipid metabolic output is determined by the position and levels of the enzymes within the Golgi stack, but the mechanisms that coordinate the intra-Golgi localisation of the enzymes are poorly understood. Here, we show that a group of sequentially-acting enzymes operating at the branchpoint among glycosphingolipid synthetic pathways binds the Golgi-localised oncoprotein GOLPH3. GOLPH3 sorts these enzymes into vesicles for intra-Golgi retro-transport, acting as a component of the cisternal maturation mechanism. Through these effects, GOLPH3 controls the sub-Golgi localisation and the lysosomal degradation rate of specific enzymes. Increased GOLPH3 levels, as those observed in tumours, alter glycosphingolipid synthesis and plasma membrane composition thereby promoting mitogenic signalling and cell proliferation. These data have medical implications as they outline a novel oncogenic mechanism of action for GOLPH3 based on glycosphingolipid metabolism.
KW - GOLPH3
KW - Golgi
KW - Trafficking
KW - cisternal maturation
KW - mTOR
UR - https://www.scopus.com/pages/publications/85102812214
U2 - 10.15252/embj.2020107238
DO - 10.15252/embj.2020107238
M3 - Article
C2 - 33749896
AN - SCOPUS:85102812214
SN - 0261-4189
VL - 40
JO - EMBO Journal
JF - EMBO Journal
IS - 8
M1 - e107238
ER -