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Paper Title
Inhibitory proteins block substrate access by occupying the active site cleft of <i>Bacillus subtilis</i> intramembrane protease SpoIVFB.
PubMed
Paper Journal Title
Elife
Paper Citation Count
6
Paper Publication Year
2022
Bio Mention
BofA, C, IP, IPs, Intramembrane proteases, N, SpoIVFA, SpoIVFB, SpoIVFB active site, SpoIVFB soluble domain, TMS, active, cells, dormant reproductive cells, intramembrane metalloprotease SpoIVFB, intramembrane protease SpoIVFB, parent cell, parent cells, proteins BofA, spores
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Lim Heo
Michigan State University
Lim Heo
Michigan State University
Michael Feig
Michigan State University
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