WDR5 serves in co-activation and influences genome targeting of KLF3. Yang, L., Shah, M., Chavalit, T., Psaila, A., M., Lim, W., F., Zhong, L., Safari, V., N., Haddad, M., Vu, T., Mackay, J., P., Raftery, M., J., Wilkins, M., Matthews, J., M., Quinlan, K., G., R., & Crossley, M. Nucl Acids Res, 53:gkaf977, 2025.
bibtex   
@article{
 title = {WDR5 serves in co-activation and influences genome targeting of KLF3},
 type = {article},
 year = {2025},
 pages = {gkaf977},
 volume = {53},
 id = {de6edcd8-c298-3f0f-b319-d06c4ff21373},
 created = {2026-05-27T03:42:50.883Z},
 file_attached = {false},
 profile_id = {a5a2ab6f-a8b5-3db6-97bc-618752ee4386},
 group_id = {bc1ab1d4-9e57-37e6-9fb5-435fca0ee9d2},
 last_modified = {2026-05-27T03:42:50.883Z},
 read = {false},
 starred = {false},
 authored = {false},
 confirmed = {false},
 hidden = {false},
 source_type = {article},
 private_publication = {false},
 bibtype = {article},
 author = {Yang, L and Shah, M and Chavalit, T and Psaila, A M and Lim, W F and Zhong, L and Safari, V N and Haddad, M and Vu, T and Mackay, J P and Raftery, M J and Wilkins, M and Matthews, J M and Quinlan, K G R and Crossley, M},
 journal = {Nucl Acids Res}
}

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