4.5 Article

Syntaxin 3 interacts with serotonin transporter and regulates its function

期刊

JOURNAL OF PHARMACOLOGICAL SCIENCES
卷 145, 期 4, 页码 297-307

出版社

JAPANESE PHARMACOLOGICAL SOC
DOI: 10.1016/j.jphs.2021.01.007

关键词

Serotonin transporter; Syntaxin 3; Membrane trafficking; Caco-2 cells; Glycosylation

资金

  1. Ministry of Education, Sports, and Culture [16H05133, 16K15318, 19H03409]
  2. Takeda Science Foundation
  3. Uehara Memorial Foundation
  4. Japanese Smoking Research Association

向作者/读者索取更多资源

The study revealed a functional association between SERT and STX3, showing that STX3 overexpression can reduce SERT uptake activity. STX3 knockdown affects SERT glycosylation, while in naturally expressing cells like Caco-2, STX3 positively regulates SERT function.
Herein, we investigated the functional association of the serotonin transporter (SERT) with syntaxin-3 (STX3). We first overexpressed SERT and STX3 in various cells and examined their interaction, localization, and functional association. Immunoprecipitation studies revealed that STX3 interacted with SERT when expressed in COS-7 cells. Immunocytochemical studies revealed that SERT and STX3 were colocalized in the endoplasmic reticulum (ER) and Golgi apparatus. STX3 overexpression significantly reduced the uptake activity of SERT by attenuating its plasma membrane expression, suggesting that overexpressed STX3 anchors SERT in the ER and Golgi apparatus. STX3 knockdown did not affect the uptake activity of SERT but altered its glycosylation state. To elucidate the association of STX3 with SERT under physiological conditions, rather than overexpressing cells, we investigated this interaction in polarized Caco-2 cells, which endogenously express both proteins. Immunocytochemical studies revealed that SERT and STX3 were localized in microvilli-like structures at the apical plasma membrane. STX3 knockdown marginally but significantly decreased the serotonin uptake activity of Caco-2 cells, suggesting that STX3 positively regulates SERT function in Caco-2 cells, as opposed to SERT regulation by STX3 in overexpressing cells. Collectively, STX3 may colocalize with SERT during SERT membrane trafficking and regulate SERT function in an STX3-expressing lesion-dependent manner. (C) 2021 The Authors. Production and hosting by Elsevier B.V. on behalf of Japanese Pharmacological Society.

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