Structural basis for misregulation of kinesin KIF21A autoinhibition by CFEOM1 disease mutations

Publication date

2016-08-03

Authors

Bianchi, Sarah
Van Riel, Wilhelmina E.ISNI 0000000388480143
Kraatz, Sebastian H W
Olieric, Natacha
Frey, Daniel
Katrukha, Eugene AISNI 0000000492896501
Jaussi, Rolf
Missimer, John
Grigoriev, IlyaISNI 0000000492860971
Olieric, Vincent

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Abstract

Tight regulation of kinesin activity is crucial and malfunction is linked to neurological diseases. Point mutations in the KIF21A gene cause congenital fibrosis of the extraocular muscles type 1 (CFEOM1) by disrupting the autoinhibitory interaction between the motor domain and a regulatory region in the stalk. However, the molecular mechanism underlying the misregulation of KIF21A activity in CFEOM1 is not understood. Here, we show that the KIF21A regulatory domain containing all disease-associated substitutions in the stalk forms an intramolecular antiparallel coiled coil that inhibits the kinesin. CFEOM1 mutations lead to KIF21A hyperactivation by affecting either the structural integrity of the antiparallel coiled coil or the autoinhibitory binding interface, thereby reducing its affinity for the motor domain. Interaction of the KIF21A regulatory domain with the KIF21B motor domain and sequence similarities to KIF7 and KIF27 strongly suggest a conservation of this regulatory mechanism in other kinesin-4 family members.

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Bianchi, S, van Riel, W E, Kraatz, S H W, Olieric, N, Frey, D, Katrukha, E A, Jaussi, R, Missimer, J, Grigoriev, I, Olieric, V, Benoit, R M, Steinmetz, M O, Akhmanova, A & Kammerer, R A 2016, 'Structural basis for misregulation of kinesin KIF21A autoinhibition by CFEOM1 disease mutations', Scientific Reports, vol. 6, 30668. https://doi.org/10.1038/srep30668