2017
DOI: 10.1016/j.cell.2017.08.045
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Golgi-Resident Gαo Promotes Protrusive Membrane Dynamics

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Cited by 13 publications
(10 citation statements)
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“…Deviations from perfect balance, if not sensed and corrected, would lead to rapid compositional and morphological disruption of this organelle [37,38]. Here, a control system senses the incoming fluxes using the KDEL-receptor as a sensor that detects arrival at the Golgi of a specific group of chaperones escaping the ER, and activates multiple signal transduction pathways to regulate the retrograde and anterograde export out of the Golgi and so counteract imbalances in the membrane/proteins content in the Golgi [37][38][39][40]. In more detail, the KDEL sequence-containing tail of chaperones binds the KDELR, thus stimulating the Golgi localized Gq [39] and Gs proteins [37].…”
Section: The Cis-golgi Kdelr-based Autoregulatory Systemmentioning
confidence: 99%
“…Deviations from perfect balance, if not sensed and corrected, would lead to rapid compositional and morphological disruption of this organelle [37,38]. Here, a control system senses the incoming fluxes using the KDEL-receptor as a sensor that detects arrival at the Golgi of a specific group of chaperones escaping the ER, and activates multiple signal transduction pathways to regulate the retrograde and anterograde export out of the Golgi and so counteract imbalances in the membrane/proteins content in the Golgi [37][38][39][40]. In more detail, the KDEL sequence-containing tail of chaperones binds the KDELR, thus stimulating the Golgi localized Gq [39] and Gs proteins [37].…”
Section: The Cis-golgi Kdelr-based Autoregulatory Systemmentioning
confidence: 99%
“…al., 2014;Luini and Parashuraman, 2016) A well characterized homeostatic device is the unfolded protein response (UPR), which regulates the levels of unfolded proteins in the ER through multiple signaling and transcriptional cascades (Walter and Ron, 2011). Other examples are the autoregulatory systems that operate in the ER (Subramanian et al, 2019;Centonze et al, 2019) and the Golgi (Pulvirenti et al, 2008;Giannotta et al, 2012;Cancino et al, 2014;Solis et al, 2017;Tapia et al, 2019) that ensure the correct trafficking through these stations. So far, the organization, molecular determinants and function of a potential autoregulatory circuit at the TGN has not been examined.…”
Section: Introductionmentioning
confidence: 99%
“…Further studies in plants are neededto investigate how the inhibitory effect of plant heterotrimeric G protein complex on ERD2s was regulated by the incoming cargos. A recent report suggested mammalian ERD2 binds and activates monomeric Gαo, and Gαo which can then interact with GTPases Rab1 and Rab3 to promote the transport from Golgi to PM (Solis et al ), and the inhibition of ER retention by depletion of p24 proteins causes the secretion of BiP to the apoplast in Arabidopsis (Pastor‐Cantizano et al ). Consistent with these findings, we showed that G protein subunits interacted with ERD2s and silencing of G protein subunits inhibited the secretion of HDEL cargo (Figure S7B).…”
Section: Discussionmentioning
confidence: 99%
“…Besides their role in ER retrieval, mammalian ERD2s can modulate ER stress responses through mitogen‐activated protein kinase (MAPK) signaling cascades and activate Src family kinases in the Golgi complex to regulate Golgi‐to‐plasma membrane transport (Aoe et al ; Yamamoto et al ; Pulvirenti et al ). Recently, a mammalian KDEL receptor (mammalian ERD2) was reported to activate the heterotrimeric G protein alpha subunit, Ga q/11 or monomeric Gαo and, in turn, promoted protein forward transport from the Golgi to the plasma membrane (Giannotta et al ; Solis et al ).…”
Section: Introductionmentioning
confidence: 99%