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:Q13432 | uniprot:R4GN89 | Homo sapiens | Homo sapiens | pubmed:25416956 | physical association | validated two hybrid | intact |
uniprot:Q08209 | uniprot:R4GN89 | Homo sapiens | Homo sapiens | pubmed:25416956 | physical association | two hybrid array | intact |
uniprot:Q08209 | uniprot:R4GN89 | Homo sapiens | Homo sapiens | pubmed:25416956 | physical association | validated two hybrid | intact |
uniprot:B0QXZ6 | uniprot:R4GMX3 | Homo sapiens | Homo sapiens | pubmed:27705803 | physical association | affinity chromatography technology | biogrid |
uniprot:Q14011 | uniprot:Q9ZFR9 | Yersinia pestis | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q14011 | uniprot:Q9ZFR9 | Yersinia pestis | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q14011 | uniprot:Q9ZFR9 | Homo sapiens | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q14011 | uniprot:Q9ZFR9 | Homo sapiens | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q8IZH2 | uniprot:Q9ZFR9 | Bacillus anthracis | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q8IZH2 | uniprot:Q9ZFR9 | Bacillus anthracis | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q8IZH2 | uniprot:Q9ZFR9 | Yersinia pestis | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q8IZH2 | uniprot:Q9ZFR9 | Yersinia pestis | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q8IZH2 | uniprot:Q9ZFR9 | Homo sapiens | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:Q8IZH2 | uniprot:Q9ZFR9 | Homo sapiens | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Bacillus anthracis | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Bacillus anthracis | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Francisella tularensis subsp. tularensis (strain SCHU S4 / Schu 4) | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Francisella tularensis subsp. tularensis (strain SCHU S4 / Schu 4) | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Dengue virus type 2 (strain 16681-PDK53) | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Dengue virus type 2 (strain 16681-PDK53) | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Hepatitis C virus genotype 2a (isolate JFH-1) | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Hepatitis C virus genotype 2a (isolate JFH-1) | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Yersinia pestis | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Yersinia pestis | Homo sapiens | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
uniprot:O75592 | uniprot:Q9ZC68 | Homo sapiens | Yersinia pestis | imex:IM-13779 | physical association | two hybrid pooling approach | intact |
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Last updated: August 19, 2024