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  • Cryo-electron microscopy structures of VCP/p97 reveal a new mechanism of oligomerization regulation.

Cryo-electron microscopy structures of VCP/p97 reveal a new mechanism of oligomerization regulation.

iScience (2021-11-13)
Guimei Yu, Yunpeng Bai, Kunpeng Li, Ovini Amarasinghe, Wen Jiang, Zhong-Yin Zhang
ABSTRACT

VCP/p97 is an evolutionarily conserved AAA+ ATPase important for cellular homeostasis. Previous studies suggest that VCP predominantly exists as a homohexamer. Here, we performed structural and biochemical characterization of VCP dodecamer, an understudied state of VCP. The structure revealed an apo nucleotide status that has rarely been captured, a tail-to-tail assembly of two hexamers, and the up-elevated N-terminal domains akin to that seen in the ATP-bound hexamer. Further analyses elucidated a nucleotide status-dependent dodecamerization mechanism, where nucleotide dissociation from the D2 AAA domains induces and promotes VCP dodecamerization. In contrast, nucleotide-free D1 AAA domains are associated with the up-rotation of N-terminal domains, which may prime D1 for ATP binding. These results therefore reveal new nucleotide status-dictated intra- and interhexamer conformational changes and suggest that modulation of D2 domain nucleotide occupancy may serve as a mechanism in controlling VCP oligomeric states.

MATERIALS
Product Number
Brand
Product Description

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3X FLAG® Peptide, lyophilized powder
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Adenosine 5′-[γ-thio]triphosphate tetralithium salt, ≥75% (HPLC), powder
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ANTI-FLAG® M2 Affinity Gel, purified immunoglobulin, buffered aqueous glycerol solution
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Adenosine 5′-diphosphate sodium salt, bacterial, ≥95% (HPLC)
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ANTI-FLAG® M2 antibody, Mouse monoclonal, 1 mg/mL, clone M2, affinity isolated antibody, buffered aqueous solution (50% glycerol, 10 mM sodium phosphate, and 150 mM NaCl, pH 7.4)