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Structure paper

TitleStructural underpinnings of human Slo1 inhibition by scorpion and fungal toxins.
Journal, issue, pagesProc Natl Acad Sci U S A, Vol. 123, Issue 38, Page e2606537123, Year 2026
Publish dateSep 22, 2026
AuthorsGopal S Kallure / Kamalendu Pal / Gabriel W Prather / Sandipan Chowdhury /
PubMed AbstractSlo1 channels regulate key electrochemical signaling events in a variety of excitable and nonexcitable cells. Here, we have investigated the mechanisms by which distinct small molecules inhibit human ...Slo1 channels regulate key electrochemical signaling events in a variety of excitable and nonexcitable cells. Here, we have investigated the mechanisms by which distinct small molecules inhibit human Slo1 (hSlo1) channel activity using single-particle cryo-EM, liposome flux, and toxin-binding assays. We find that unlike classical permeation blockers like scorpion toxins, indole diterpene (ID) class of fungal mycotoxins, paxilline and penitrem A, are ensconced in a binding pocket, deep within the putatively closed hSlo1 pore and sterically restrict its opening. Binding of paxilline to its gating inhibition site dramatically slows dissociation of a fluorescent charybdotoxin derivative, via an allosteric mechanism that likely involves a key residue on the S5 helix (W246). Although four paxilline molecules may concurrently engage the hSlo1 pore, binding of <4 molecules is sufficient for efficacious inhibition of channel opening but inefficient at arresting toxin dissociation. We also find evidence that under divalent and ID free conditions, the ID binding pocket of hSlo1 is occluded by lipids that extend into the hSlo1 pore lumen through interhelical crevices that become constricted in the divalent bound open state. These lipids may not only competitively regulate ID binding but also tune the energetics of channel gating, sterically or by altering the hydration state of the pore vestibule. Our study provides a framework to understand fundamental Slo1 gating mechanisms and aid future developments of therapeutically beneficial small molecule Slo1 inhibitors.
External linksProc Natl Acad Sci U S A / PubMed:42735318
MethodsEM (single particle)
Resolution2.57 - 3.1 Å
Structure data

EMDB-75627, PDB-11cz:
Human Slo1-paxilline complex under divalent chelated condition - full model
Method: EM (single particle) / Resolution: 2.6 Å

EMDB-75628, PDB-11da:
Human Slo1-PenitremA complex under divalent chelated condition - full model
Method: EM (single particle) / Resolution: 2.57 Å

EMDB-75629, PDB-11db:
Human Slo1-Paxilline complex under divalent chelated condition - gating-ring masked
Method: EM (single particle) / Resolution: 2.71 Å

EMDB-75630, PDB-11dc:
Human Slo1-PenitremA complex under divalent chelated condition - gating-ring masked out
Method: EM (single particle) / Resolution: 2.58 Å

EMDB-75631, PDB-11dd:
Human Slo1-Charybdotoxin complex under divalent chelated condition
Method: EM (single particle) / Resolution: 2.9 Å

EMDB-75632, PDB-11de:
Human Slo1-Charybdotoxin complex under divalent chelated condition - gating ring masked map
Method: EM (single particle) / Resolution: 3.0 Å

EMDB-75633, PDB-11df:
Human Slo1-Iberiotoxin complex under divalent chelated condition - gating ring masked map
Method: EM (single particle) / Resolution: 3.1 Å

Chemicals

ChemComp-K:
Unknown entry

ChemComp-LBN:
1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine / phospholipid*YM

ChemComp-AJP:
Digitonin / detergent*YM

ChemComp-CLR:
CHOLESTEROL

PDB-1c9g:
Unknown entry

ChemComp-HOH:
WATER

PDB-1c9j:
BACILLUS LENTUS SUBTILISIN K27R/N87S/V104Y/N123S/T274A VARIANT

ChemComp-DKB:
[(2R)-1-[2-azanylethoxy(oxidanyl)phosphoryl]oxy-3-hexadecanoyloxy-propan-2-yl] octadecanoate

Source
  • homo sapiens (human)
  • leiurus quinquestriatus (Egyptian scorpion)
  • hottentotta tamulus (Indian red scorpion)
KeywordsMEMBRANE PROTEIN/TOXIN / BK / human BK / hSlo1 / paxilline / ion channel / MEMBRANE PROTEIN / MEMBRANE PROTEIN-TOXIN complex / penitrem A / charybdotoxin / iberiotoxin

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