The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling

Summary: The axon initial segment (AIS) is a compartment that serves as a molecular barrier to achieve axon-dendrite differentiation. Distribution of specific proteins during early neuronal development has been proposed to be critical for AIS construction. However, it remains unknown how these prote...

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Main Authors: Sotaro Ichinose, Tadayuki Ogawa, Xuguang Jiang, Nobutaka Hirokawa
Format: Article
Language:English
Published: Elsevier 2019-08-01
Series:Cell Reports
Online Access:http://www.sciencedirect.com/science/article/pii/S2211124719310095
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spelling doaj-80d691c99d6f4160a57662371ed41a522020-11-25T01:15:28ZengElsevierCell Reports2211-12472019-08-0128924132426.e7The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 SignalingSotaro Ichinose0Tadayuki Ogawa1Xuguang Jiang2Nobutaka Hirokawa3Department of Cell Biology and Anatomy, Graduate School of Medicine, University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, JapanDepartment of Cell Biology and Anatomy, Graduate School of Medicine, University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, JapanDepartment of Cell Biology and Anatomy, Graduate School of Medicine, University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, JapanDepartment of Cell Biology and Anatomy, Graduate School of Medicine, University of Tokyo, Hongo, Bunkyo-ku, Tokyo 113-0033, Japan; Center of Excellence in Genome Medicine Research, King Abdulaziz University, Jeddah, Saudi Arabia; Corresponding authorSummary: The axon initial segment (AIS) is a compartment that serves as a molecular barrier to achieve axon-dendrite differentiation. Distribution of specific proteins during early neuronal development has been proposed to be critical for AIS construction. However, it remains unknown how these proteins are specifically targeted to the proximal axon within this limited time period. Here, we reveal spatiotemporal regulation driven by the microtubule (MT)-based motor KIF3A/B/KAP3 that transports TRIM46, influenced by a specific MARK2 phosphorylation cascade. In the proximal part of the future axon under low MARK2 activity, the KIF3/KAP3 motor recognizes TRIM46 as cargo and transports it to the future AIS. In contrast, in the somatodendritic area under high MARK2 activity, KAP3 phosphorylated at serine 60 by MARK2 cannot bind with TRIM46 and be transported. This spatiotemporal regulation between KIF3/KAP3 and TRIM46 under specific MARK2 activity underlies the specific transport needed for axonal differentiation. : Ichinose et al. demonstrate that the KIF3/KAP3/TRIM46 protein complex spatiotemporally facilitates axonal differentiation. Unphosphorylated KAP3 can bind to TRIM46 and transport it to the axon initial segment (AIS) during neuronal polarization. This mechanism is facilitated by a biased distribution of MARK2 at the somatodendritic site. Keywords: kinesin, KIF3, kifap3, axonal transport, axon initial segment, axon differentiation, TRIM46, Par1b/MARK2http://www.sciencedirect.com/science/article/pii/S2211124719310095
collection DOAJ
language English
format Article
sources DOAJ
author Sotaro Ichinose
Tadayuki Ogawa
Xuguang Jiang
Nobutaka Hirokawa
spellingShingle Sotaro Ichinose
Tadayuki Ogawa
Xuguang Jiang
Nobutaka Hirokawa
The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling
Cell Reports
author_facet Sotaro Ichinose
Tadayuki Ogawa
Xuguang Jiang
Nobutaka Hirokawa
author_sort Sotaro Ichinose
title The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling
title_short The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling
title_full The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling
title_fullStr The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling
title_full_unstemmed The Spatiotemporal Construction of the Axon Initial Segment via KIF3/KAP3/TRIM46 Transport under MARK2 Signaling
title_sort spatiotemporal construction of the axon initial segment via kif3/kap3/trim46 transport under mark2 signaling
publisher Elsevier
series Cell Reports
issn 2211-1247
publishDate 2019-08-01
description Summary: The axon initial segment (AIS) is a compartment that serves as a molecular barrier to achieve axon-dendrite differentiation. Distribution of specific proteins during early neuronal development has been proposed to be critical for AIS construction. However, it remains unknown how these proteins are specifically targeted to the proximal axon within this limited time period. Here, we reveal spatiotemporal regulation driven by the microtubule (MT)-based motor KIF3A/B/KAP3 that transports TRIM46, influenced by a specific MARK2 phosphorylation cascade. In the proximal part of the future axon under low MARK2 activity, the KIF3/KAP3 motor recognizes TRIM46 as cargo and transports it to the future AIS. In contrast, in the somatodendritic area under high MARK2 activity, KAP3 phosphorylated at serine 60 by MARK2 cannot bind with TRIM46 and be transported. This spatiotemporal regulation between KIF3/KAP3 and TRIM46 under specific MARK2 activity underlies the specific transport needed for axonal differentiation. : Ichinose et al. demonstrate that the KIF3/KAP3/TRIM46 protein complex spatiotemporally facilitates axonal differentiation. Unphosphorylated KAP3 can bind to TRIM46 and transport it to the axon initial segment (AIS) during neuronal polarization. This mechanism is facilitated by a biased distribution of MARK2 at the somatodendritic site. Keywords: kinesin, KIF3, kifap3, axonal transport, axon initial segment, axon differentiation, TRIM46, Par1b/MARK2
url http://www.sciencedirect.com/science/article/pii/S2211124719310095
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