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A Highlights from MBoC Selection: Direct interaction of the Golgi V-ATPase a-subunit isoform with PI(4)P drives localization of Golgi V-ATPases in yeast

机译:MBoC选择的亮点:高尔基V-ATPase a亚基与PI(4)P的直接相互作用驱动酵母中高尔基V-ATPase的定位

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摘要

Luminal pH and phosphoinositide content are fundamental features of organelle identity. Vacuolar H+-ATPases (V-ATPases) drive organelle acidification in all eukaryotes, and membrane-bound a-subunit isoforms of the V-ATPase are implicated in organelle-specific targeting and regulation. Earlier work demonstrated that the endolysosomal lipid PI(3,5)P2 activates V-ATPases containing the vacuolar a-subunit isoform in Saccharomyces cerevisiae. Here we demonstrate that PI(4)P, the predominant Golgi phosphatidylinositol (PI) species, directly interacts with the cytosolic amino terminal (NT) domain of the yeast Golgi V-ATPase a-isoform Stv1. Lysine-84 of Stv1NT is essential for interaction with PI(4)P in vitro and in vivo, and interaction with PI(4)P is required for efficient localization of Stv1-containing V-ATPases. The cytosolic NT domain of the human V-ATPase a2 isoform specifically interacts with PI(4)P in vitro, consistent with its Golgi localization and function. We propose that NT domains of Vo a-subunit isoforms interact specifically with PI lipids in their organelles of residence. These interactions can transmit organelle-specific targeting or regulation information to V-ATPases.
机译:发光pH值和磷酸肌醇含量是细胞器同一性的基本特征。液泡中的H + -ATPases(V-ATPases)驱动所有真核生物中的细胞器酸化,而V-ATPase的膜结合α-亚基同工型与细胞器特异性的靶向和调控有关。早期的工作表明,溶酶体脂质PI(3,5)P2激活了酿酒酵母中含有液泡a-亚基同种型的V-ATPase。在这里,我们证明PI(4)P,主要的高尔基磷脂酰肌醇(PI)种类,直接与酵母高尔基体V-ATPase a-异构体Stv1的胞质氨基末端(NT)域相互作用。 Stv1NT的赖氨酸84是在体外和体内与PI(4)P相互作用所必需的,而与PI(4)P的相互作用是有效定位含Stv1的V-ATPase所必需的。人V-ATPase a2亚型的胞质NT域在体外与PI(4)P特异性相互作用,与其高尔基体定位和功能一致。我们建议Va a亚基亚型的NT域与它们的居住细胞器中的PI脂质特异性相互作用。这些相互作用可以将细胞器特异性的靶向或调控信息传递给V-ATPase。

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