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9LTQ

Crystal structure of human RAB43 in complex with GppNHp

Summary for 9LTQ
Entry DOI10.2210/pdb9ltq/pdb
DescriptorRas-related protein Rab-43, PHOSPHOAMINOPHOSPHONIC ACID-GUANYLATE ESTER, MAGNESIUM ION, ... (4 entities in total)
Functional Keywordssmall gtpase, rab gtpase, p-loop containing nucleotide triphosphate hydrolases, hydrolase
Biological sourceHomo sapiens (human)
Total number of polymer chains2
Total formula weight41893.06
Authors
Wang, J.,Yan, W.P. (deposition date: 2025-02-06, release date: 2026-01-14)
Primary citationWang, J.,Liu, T.,Zhang, Z.,Yan, W.
Molecular basis of Rab43 inactivation by RN-Tre in endocytic trafficking unveils a general Rab-GAP recognition mechanism.
Int.J.Biol.Macromol., 338:149561-149561, 2025
Cited by
PubMed Abstract: TBC domain-containing Rab GTPase-activating proteins (TBCs) play key roles in regulating intracellular trafficking, and mutations in these proteins can disrupt Rab inactivation and contribute to human disease. However, the molecular principles governing the substrate specificity of TBCs remain poorly understood. Here, we delineate the molecular mechanism by which RN-Tre (also known as USP6NL), an RQ-dual finger TBC protein, selectively recognizes and inactivates Rab43. The crystal structure of the RN-Tre-Rab43 complex reveals a bipartite recognition mechanism: the N-terminal subdomain catalytically remodels Rab43 Switch regions, while the C-terminal subdomain engages Switch II and reorients the hydrophobic triad to confer specificity. Structural and mutational analyses identify Leu146 and several C-terminal residues as key determinants of RN-Tre specificity, which lead us to identify Rab19 as an additional substrate. Functional assays demonstrate that disease-associated RN-Tre mutations impair GAP activity, resulting in aberrant Golgi architecture and endocytic trafficking. Collectively, this study establishes a general structural paradigm for substrate discrimination by TBCs and highlights their pivotal roles in membrane trafficking and disease.
PubMed: 41401861
DOI: 10.1016/j.ijbiomac.2025.149561
PDB entries with the same primary citation
Experimental method
X-RAY DIFFRACTION (1.6 Å)
Structure validation

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PDB entries from 2026-03-11

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