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Merck
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  • Tracing putative trafficking of the glycolytic enzyme enolase via SNARE-driven unconventional secretion.

Tracing putative trafficking of the glycolytic enzyme enolase via SNARE-driven unconventional secretion.

Eukaryotic cell (2012-07-04)
Natsuko Miura, Aya Kirino, Satoshi Endo, Hironobu Morisaka, Kouichi Kuroda, Masahiro Takagi, Mitsuyoshi Ueda
摘要

Glycolytic enzymes are cytosolic proteins, but they also play important extracellular roles in cell-cell communication and infection. We used Saccharomyces cerevisiae to analyze the secretory pathway of some of these enzymes, including enolase, phosphoglucose isomerase, triose phosphate isomerase, and fructose 1,6-bisphosphate aldolase. Enolase, phosphoglucose isomerase, and an N-terminal 28-amino-acid-long fragment of enolase were secreted in a sec23-independent manner. The enhanced green fluorescent protein (EGFP)-conjugated enolase fragment formed cellular foci, some of which were found at the cell periphery. Therefore, we speculated that an overview of the secretory pathway could be gained by investigating the colocalization of the enolase fragment with intracellular proteins. The DsRed-conjugated enolase fragment colocalized with membrane proteins at the cis-Golgi complex, nucleus, endosome, and plasma membrane, but not the mitochondria. In addition, the secretion of full-length enolase was inhibited in a knockout mutant of the intracellular SNARE protein-coding gene TLG2. Our results suggest that enolase is secreted via a SNARE-dependent secretory pathway in S. cerevisiae.

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磷酸葡糖异构酶 来源于面包酵母(酿酒酵母), Type III, ammonium sulfate suspension, ≥400 units/mg protein (biuret)
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磷酸葡萄糖异构酶 来源于兔肌肉, Type XI, lyophilized powder, ≥200 units/mg protein
Supelco
磷酸葡糖异构酶 来源于面包酵母(酿酒酵母), for use with Fructose Assay Kit FA-20
Sigma-Aldrich
磷酸葡糖异构酶 来源于嗜热脂肪芽胞杆菌, lyophilized powder, 300-1,000 units/mg protein