Newly synthesized proteins and lipids are transported across the Golgi complex via different mechanisms whose respective roles are not completely clear. We previously identified a non-vesicular intra-Golgi transport pathway for glucosylceramide (GlcCer)--the common precursor of the different series of glycosphingolipids-that is operated by the cytosolic GlcCer-transfer protein FAPP2 (also known as PLEKHA8) (ref. 1). However, the molecular determinants of the FAPP2-mediated transfer of GlcCer from the cis-Golgi to the trans-Golgi network, as well as the physiological relevance of maintaining two parallel transport pathways of GlcCer--vesicular and non-vesicular--through the Golgi, remain poorly defined. Here, using mouse and cell models, we clarify the molecular mechanisms underlying the intra-Golgi vectorial transfer of GlcCer by FAPP2 and show that GlcCer is channelled by vesicular and non-vesicular transport to two topologically distinct glycosylation tracks in the Golgi cisternae and the trans-Golgi network, respectively. Our results indicate that the transport modality across the Golgi complex is a key determinant for the glycosylation pattern of a cargo and establish a new paradigm for the branching of the glycosphingolipid synthetic pathway

Vesicular and non-vesicular transport feed distinct glycosylation pathways in the Golgi / D'Angelo, G; Uemura, T; Chuang, Cc; Polishchuk, E; Santoro, M; Ohvo Rekilä, H; Sato, T; Di Tullio, G; Varriale, A; D'Auria, S; Daniele, T; Capuani, F; Johannes, L; Mattjus, P; Monti, Maria; Pucci, Pietro; Williams, Rl; Burke, Je; Platt, Fm; Harada, A; DE MATTEIS, Maria Antonietta. - In: NATURE. - ISSN 0028-0836. - 501:7465(2013), pp. 116-120. [10.1038/nature12423]

Vesicular and non-vesicular transport feed distinct glycosylation pathways in the Golgi.

MONTI, MARIA;PUCCI, PIETRO;DE MATTEIS, Maria Antonietta
2013

Abstract

Newly synthesized proteins and lipids are transported across the Golgi complex via different mechanisms whose respective roles are not completely clear. We previously identified a non-vesicular intra-Golgi transport pathway for glucosylceramide (GlcCer)--the common precursor of the different series of glycosphingolipids-that is operated by the cytosolic GlcCer-transfer protein FAPP2 (also known as PLEKHA8) (ref. 1). However, the molecular determinants of the FAPP2-mediated transfer of GlcCer from the cis-Golgi to the trans-Golgi network, as well as the physiological relevance of maintaining two parallel transport pathways of GlcCer--vesicular and non-vesicular--through the Golgi, remain poorly defined. Here, using mouse and cell models, we clarify the molecular mechanisms underlying the intra-Golgi vectorial transfer of GlcCer by FAPP2 and show that GlcCer is channelled by vesicular and non-vesicular transport to two topologically distinct glycosylation tracks in the Golgi cisternae and the trans-Golgi network, respectively. Our results indicate that the transport modality across the Golgi complex is a key determinant for the glycosylation pattern of a cargo and establish a new paradigm for the branching of the glycosphingolipid synthetic pathway
2013
Vesicular and non-vesicular transport feed distinct glycosylation pathways in the Golgi / D'Angelo, G; Uemura, T; Chuang, Cc; Polishchuk, E; Santoro, M; Ohvo Rekilä, H; Sato, T; Di Tullio, G; Varriale, A; D'Auria, S; Daniele, T; Capuani, F; Johannes, L; Mattjus, P; Monti, Maria; Pucci, Pietro; Williams, Rl; Burke, Je; Platt, Fm; Harada, A; DE MATTEIS, Maria Antonietta. - In: NATURE. - ISSN 0028-0836. - 501:7465(2013), pp. 116-120. [10.1038/nature12423]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11588/562529
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