Structure and function of TM6SF1 reveals role in mTORC1 signaling

The transmembrane 6 superfamily (TM6SF) comprises two members: TM6SF1, a ubiquitously expressed lysosomal membrane protein of unknown function, and TM6SF2, an endoplasmic reticulum protein required for bulk lipidation of Apolipoprotein B-containing lipoproteins. Here, we used cryo-electron microscopy (cryo-EM) to determine the structure of human TM6SF1 at 2.9-Å resolution. TM6SF1 forms a polytopic homodimer, with each protomer comprising 10 transmembrane helices (TMs). TMs 1-6 form a pocket that accommodates a cholesterol molecule. Cell-based assays revealed that loss of TM6SF1 perturbs mTORC1 signaling, resulting in reduced phosphorylation of S6 kinase 1 and 4E-BP1 and constitutive activation of transcription factor EB (TFEB), and that cholesterol is required for these effects. Biochemical analyses support the model that TM6SF1 directly engages LAMTOR1, a component of Ragulator complex, in a cholesterol-dependent manner. Together, these findings identify TM6SF1 as a lysosomal cholesterol binding protein involved in regulating mTORC1 signaling.

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Publication Details

Journal
Proceedings of the National Academy of Sciences
Published
2026-09-14
DOI
https://doi.org/10.1073/pnas.2622424123
Primary Topic
Cellular transport and secretion
Type
article
Field-Weighted Citation Impact
0.00

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article

Structure and function of TM6SF1 reveals role in mTORC1 signaling

Helen H. Hobbs, Rong Wang, Liangjie Jia, Nadia Elghobashi‐Meinhardt et al.
Proceedings of the National Academy of Sciences
Cellular transport and secretion
article

Structure and function of TM6SF1 reveals role in mTORC1 signaling

Helen H. Hobbs, Rong Wang, Liangjie Jia, Nadia Elghobashi‐Meinhardt, Xiaochun Li, Sen Hong
article en

Abstract

The transmembrane 6 superfamily (TM6SF) comprises two members: TM6SF1, a ubiquitously expressed lysosomal membrane protein of unknown function, and TM6SF2, an endoplasmic reticulum protein required for bulk lipidation of Apolipoprotein B-containing lipoproteins. Here, we used cryo-electron microscopy (cryo-EM) to determine the structure of human TM6SF1 at 2.9-Å resolution. TM6SF1 forms a polytopic homodimer, with each protomer comprising 10 transmembrane helices (TMs). TMs 1-6 form a pocket that accommodates a cholesterol molecule. Cell-based assays revealed that loss of TM6SF1 perturbs mTORC1 signaling, resulting in reduced phosphorylation of S6 kinase 1 and 4E-BP1 and constitutive activation of transcription factor EB (TFEB), and that cholesterol is required for these effects. Biochemical analyses support the model that TM6SF1 directly engages LAMTOR1, a component of Ragulator complex, in a cholesterol-dependent manner. Together, these findings identify TM6SF1 as a lysosomal cholesterol binding protein involved in regulating mTORC1 signaling.

Proceedings of the National Academy of SciencesVol. 123(38)
University College Dublin (IE), Southwestern Medical Center (US), The University of Texas Southwestern Medical Center (US)
Welch Foundation, National Heart, Lung, and Blood Institute, National Institute of General Medical Sciences, National Institute of Diabetes and Digestive and Kidney Diseases
Openalex Percentile: Top 15%
Cellular transport and secretion
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Structure and function of TM6SF1 reveals role in mTORC1 signaling — Helen H. Hobbs, Rong Wang, et al. · Proceedings of the National Academy of Sciences (2026) | TGRS Research Map | TGRS