For each citation that was shared on social media (LinkedIn, Facebook, or Twitter) with the “@GenScript” tag, the author will be rewarded with a $10 Amazon gift card or 2,000 GS points.

Structure of the lysosomal KICSTOR-GATOR1-SAMTOR nutrient-sensing supercomplex

Cell. 2026-01; 
Christopher J. Lupton, Charles Bayly-Jones, Shuqi Dong, Terrance Lam, Wentong Luo, Gareth D. Jones, Chantel Mastos, Nicholas J. Frescher, San S. Lim, Alastair C. Keen, Luke E. Formosa, Hari Venugopal, Yong-Gang Chang, Michelle L. Halls, Andrew M. Ellisdon Cancer Program, Biomedicine Discovery Institute, Monash University
Products/Services Used Details Operation
Molecular Biology Reagents Overall, we found greater yields from the use of a Dounce homogenizer. Lysates were clarified by centrifugation (32,816 g, 30 min, 4°C), before the addition of 5 mL of anti-FLAG G1 affinity resin (GenScript). KICSTOR was eluted in lysis buffer with 0.1 mg/mL FLAG peptide (GenScript). Get A Quote

Abstract

The guanosine triphosphate (GTP)-bound state of the heterodimeric Rag GTPases functions as a molecular switch regulating mechanistic target of rapamycin complex 1 (mTORC1) activation at the lysosome downstream of amino acid fluctuations. Under low amino acid conditions, GTPase-activating protein (GAP) activity toward Rags 1 (GATOR1) promotes RagA GTP hydrolysis, preventing mTORC1 activation. KICSTOR recruits and regulates GATOR1 at the lysosome by undefined mechanisms. Here, we resolve the KICSTOR-GATOR1 structure, revealing a striking ∼60-nm crescent-shaped assembly. GATOR1 anchors to KICSTOR via an extensive interface, and mutations that disrupt this interaction impair mTORC1 regulation. The S-adenosylmethi... More

Keywords