棕榈酰化
动力蛋白
生物
细胞生物学
高尔基体
转运蛋白
动态素
驱动蛋白
信号转导衔接蛋白
蛋白质靶向
蛋白质分选信号
微管
运动蛋白
内体
支架蛋白
胞浆
囊泡转运蛋白
膜蛋白
生物化学
小泡
内质网
半胱氨酸
肽序列
膜
细胞内
信号转导
信号肽
酶
基因
作者
Sönke Rudnik,Saskia Heybrock,Paul Säftig,Markus Daμμe
摘要
The spatiotemporal cellular distribution of lysosomes depends on active transport mainly driven by microtubule motors such as kinesins and dynein. Different protein complexes attach these molecular motors to their vesicular cargo. TMEM55B (also known as PIP4P1), as an integral lysosomal membrane protein, is a component of such a complex that mediates the retrograde transport of lysosomes by establishing interactions with the cytosolic scaffold protein JIP4 (also known as SPAG9) and dynein-dynactin. Here, we show that TMEM55B and its paralog TMEM55A (PIP4P2) are S-palmitoylated proteins that are lipidated at multiple cysteine residues. Mutation of all cysteines in TMEM55B prevents S-palmitoylation and causes retention of the mutated protein in the Golgi. Consequently, non-palmitoylated TMEM55B is no longer able to modulate lysosomal positioning and the perinuclear clustering of lysosomes. Additional mutagenesis of the dileucine-based lysosomal sorting motif in non-palmitoylated TMEM55B leads to partial missorting to the plasma membrane instead of retention in the Golgi, implicating a direct effect of S-palmitoylation on the adaptor protein-dependent sorting of TMEM55B. Our data suggest a critical role for S-palmitoylation in the trafficking of TMEM55B and TMEM55B-dependent lysosomal positioning.
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