SUMOylation does not affect cardiac troponin I stability but alters indirectly the development of force in response to Ca2+.

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Title: SUMOylation does not affect cardiac troponin I stability but alters indirectly the development of force in response to Ca2+.
Authors: Fertig, Bracy1 (AUTHOR), Ling, Jiayue1 (AUTHOR), Nollet, Edgar E.2 (AUTHOR), Dobi, Sara1 (AUTHOR), Busiau, Tara1 (AUTHOR), Ishikawa, Kiyotake3 (AUTHOR), Yamada, Kelly3 (AUTHOR), Lee, Ahyoung3 (AUTHOR), Kho, Changwon4 (AUTHOR), Wills, Lauren5 (AUTHOR), Tibbo, Amy J.1 (AUTHOR), Scott, Mark6 (AUTHOR), Grant, Kirsten7 (AUTHOR), Campbell, Kenneth S.8,9 (AUTHOR), Birks, Emma J.9 (AUTHOR), MacQuaide, Niall10 (AUTHOR), Hajjar, Roger11 (AUTHOR), Smith, Godfrey L.1 (AUTHOR), van der Velden, Jolanda2,12 (AUTHOR), Baillie, George S.1 (AUTHOR) george.baillie@glasgow.ac.uk
Source: FEBS Journal. Oct2022, Vol. 289 Issue 20, p6267-6285. 19p.
Database: Academic Search Ultimate
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ISSN:1742464X
DOI:10.1111/febs.16537