Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres
Differentiation of columnar epithelial cells involves a dramatic reorganization of the microtubules (MTs) and centrosomal components into an apico-basal array no longer anchored at the centrosome. Instead, the minus-ends of the MTs become anchored at apical non-centrosomal microtubule organizing cen...
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doaj-1836b1716eb742d6bf2ce97eb17082272020-11-25T03:55:47ZengThe Royal SocietyOpen Biology2046-24412017-01-017210.1098/rsob.160274160274Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centresDeborah A. GoldspinkChris RookyardBenjamin J. TyrrellJonathan GadsbyJames PerkinsElizabeth K. LundNiels GaljartPaul ThomasTom WilemanMette M. MogensenDifferentiation of columnar epithelial cells involves a dramatic reorganization of the microtubules (MTs) and centrosomal components into an apico-basal array no longer anchored at the centrosome. Instead, the minus-ends of the MTs become anchored at apical non-centrosomal microtubule organizing centres (n-MTOCs). Formation of n-MTOCs is critical as they determine the spatial organization of MTs, which in turn influences cell shape and function. However, how they are formed is poorly understood. We have previously shown that the centrosomal anchoring protein ninein is released from the centrosome, moves in a microtubule-dependent manner and accumulates at n-MTOCs during epithelial differentiation. Here, we report using depletion and knockout (KO) approaches that ninein expression is essential for apico-basal array formation and epithelial elongation and that CLIP-170 is required for its redeployment to n-MTOCs. Functional inhibition also revealed that IQGAP1 and active Rac1 coordinate with CLIP-170 to facilitate microtubule plus-end cortical targeting and ninein redeployment. Intestinal tissue and in vitro organoids from the Clip1/Clip2 double KO mouse with deletions in the genes encoding CLIP-170 and CLIP-115, respectively, confirmed requirement of CLIP-170 for ninein recruitment to n-MTOCs, with possible compensation by other anchoring factors such as p150Glued and CAMSAP2 ensuring apico-basal microtubule formation despite loss of ninein at n-MTOCs.https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160274microtubulesnineinclip-170iqgap1rac1non-centrosomal mtocs |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Deborah A. Goldspink Chris Rookyard Benjamin J. Tyrrell Jonathan Gadsby James Perkins Elizabeth K. Lund Niels Galjart Paul Thomas Tom Wileman Mette M. Mogensen |
spellingShingle |
Deborah A. Goldspink Chris Rookyard Benjamin J. Tyrrell Jonathan Gadsby James Perkins Elizabeth K. Lund Niels Galjart Paul Thomas Tom Wileman Mette M. Mogensen Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres Open Biology microtubules ninein clip-170 iqgap1 rac1 non-centrosomal mtocs |
author_facet |
Deborah A. Goldspink Chris Rookyard Benjamin J. Tyrrell Jonathan Gadsby James Perkins Elizabeth K. Lund Niels Galjart Paul Thomas Tom Wileman Mette M. Mogensen |
author_sort |
Deborah A. Goldspink |
title |
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres |
title_short |
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres |
title_full |
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres |
title_fullStr |
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres |
title_full_unstemmed |
Ninein is essential for apico-basal microtubule formation and CLIP-170 facilitates its redeployment to non-centrosomal microtubule organizing centres |
title_sort |
ninein is essential for apico-basal microtubule formation and clip-170 facilitates its redeployment to non-centrosomal microtubule organizing centres |
publisher |
The Royal Society |
series |
Open Biology |
issn |
2046-2441 |
publishDate |
2017-01-01 |
description |
Differentiation of columnar epithelial cells involves a dramatic reorganization of the microtubules (MTs) and centrosomal components into an apico-basal array no longer anchored at the centrosome. Instead, the minus-ends of the MTs become anchored at apical non-centrosomal microtubule organizing centres (n-MTOCs). Formation of n-MTOCs is critical as they determine the spatial organization of MTs, which in turn influences cell shape and function. However, how they are formed is poorly understood. We have previously shown that the centrosomal anchoring protein ninein is released from the centrosome, moves in a microtubule-dependent manner and accumulates at n-MTOCs during epithelial differentiation. Here, we report using depletion and knockout (KO) approaches that ninein expression is essential for apico-basal array formation and epithelial elongation and that CLIP-170 is required for its redeployment to n-MTOCs. Functional inhibition also revealed that IQGAP1 and active Rac1 coordinate with CLIP-170 to facilitate microtubule plus-end cortical targeting and ninein redeployment. Intestinal tissue and in vitro organoids from the Clip1/Clip2 double KO mouse with deletions in the genes encoding CLIP-170 and CLIP-115, respectively, confirmed requirement of CLIP-170 for ninein recruitment to n-MTOCs, with possible compensation by other anchoring factors such as p150Glued and CAMSAP2 ensuring apico-basal microtubule formation despite loss of ninein at n-MTOCs. |
topic |
microtubules ninein clip-170 iqgap1 rac1 non-centrosomal mtocs |
url |
https://royalsocietypublishing.org/doi/pdf/10.1098/rsob.160274 |
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