Molecular Interaction Databases
ID molecule A | ID molecule B | Species of molecule A | Species of molecule B ▼ | Evidence (Publication) | Interaction Type | Interaction Detection Method | Source |
---|---|---|---|---|---|---|---|
uniprot:P05067 | uniprot:P01034 | Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961) | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:P01034 | Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961) | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:P01034 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:P01034 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:P01034 | Oryctolagus cuniculus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:P01034 | Oryctolagus cuniculus | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:O43680 | Mus musculus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid array | intact |
uniprot:P05067 | uniprot:O43680 | Mus musculus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:O43680 | Mus musculus | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:O43680 | Rattus norvegicus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid array | intact |
uniprot:P05067 | uniprot:O43680 | Rattus norvegicus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:O43680 | Rattus norvegicus | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:O43680 | Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961) | Yersinia pestis | imex:IM-28217 | physical association | two hybrid array | intact |
uniprot:P05067 | uniprot:O43680 | Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961) | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:O43680 | Vibrio cholerae serotype O1 (strain ATCC 39315 / El Tor Inaba N16961) | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:O43680 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | two hybrid array | intact |
uniprot:P05067 | uniprot:O43680 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:O43680 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067 | uniprot:O43680 | Oryctolagus cuniculus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid array | intact |
uniprot:P05067 | uniprot:O43680 | Oryctolagus cuniculus | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067 | uniprot:O43680 | Oryctolagus cuniculus | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067-2 | uniprot:Q12891 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067-2 | uniprot:Q12891 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
uniprot:P05067-2 | uniprot:Q9UHY8 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | two hybrid pooling approach | intact |
uniprot:P05067-2 | uniprot:Q9UHY8 | Homo sapiens | Yersinia pestis | imex:IM-28217 | physical association | validated two hybrid | intact |
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Last updated: December 9, 2024