Double prenylation of SNARE protein Ykt6 is required for lysosomal hydrolase trafficking.

J Biochem

Department of Molecular and Cellular Biology, Institute of Development, Aging and Cancer, Tohoku University, Sendai 980-8575, Japan.

Published: April 2021

AI Article Synopsis

  • Ykt6 is a unique SNARE protein that helps with Golgi membrane fusion and various membrane trafficking but does not have a transmembrane domain; instead, it has a tandem cysteine motif at its end.
  • Ykt6 undergoes a process called double prenylation, important for its function, where it is first prenylated by farnesyltransferase and then by a newly identified enzyme, GGTase-III; if this process is interrupted, it leads to issues in the Golgi structure and function.
  • In cells lacking the GGTase-III subunit (PTAR1 KO), certain enzymes fail to be sorted correctly, leading to their secretion outside the cell instead

Article Abstract

Ykt6 is an evolutionarily conserved SNARE protein regulating Golgi membrane fusion and other diverse membrane trafficking pathways. Unlike most SNARE proteins, Ykt6 lacks a transmembrane domain but instead has a tandem cysteine motif at the C-terminus. Recently, we have demonstrated that Ykt6 undergoes double prenylation at the C-terminal two cysteines first by farnesyltransferase and then by a newly identified protein prenyltransferase named geranylgeranyltransferase type-III (GGTase-III). GGTase-III consists of a novel α subunit prenyltransferase alpha subunit repeat containing 1 (PTAR1) and the β subunit of Rab geranylgeranyltransferase. PTAR1 knockout (KO) cells, where Ykt6 is singly prenylated with a farnesyl moiety, exhibit structural and functional abnormalities in the Golgi apparatus with delayed intra-Golgi trafficking and impaired protein glycosylation. It remains unclear whether the second prenylation of Ykt6 is required for proper trafficking of lysosomal hydrolases from Golgi to lysosomes. Here, we show that lysosomal hydrolases, cathepsin D and β-hexosaminidase, were missorted at the trans-Golgi network and secreted into the extracellular space in PTAR1 KO cells. Moreover, maturation of these hydrolases was disturbed. LC3B, an autophagy marker, was accumulated in PTAR1 KO cells, suggesting defects in cellular degradation pathways. Thus, doubly prenylated Ykt6, but not singly prenylated Ykt6, is critical for the efficient sorting and trafficking of acid hydrolases to lysosomes.

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Source
http://dx.doi.org/10.1093/jb/mvaa111DOI Listing

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