Kinesin-4 optimizes microtubule orientations for responsive tip growth guidance in moss

Jeroen de Keijzer*, Ruben van Spoordonk, Joanne E. van der Meer-Verweij, Marcel Janson, Tijs Ketelaar*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Tip-growing cells of, amongst others, plants and fungi secrete wall materials in a highly polarized fashion for fast and efficient colonization of the environment. A polarized microtubule cytoskeleton, in which most microtubule ends are directed toward the growing apex, has been implicated in directing growth. Its organizing principles, in particular regarding maintenance of network unipolarity, have remained elusive. We show that a kinesin-4 protein, hitherto best known for a role in cytokinesis, suppresses encounters between antiparallel microtubules. Without this activity, microtubules hyper-aligned along the growth axis and increasingly grew away from the apex. Cells themselves displayed an overly straight growth path and a delayed gravitropic response. This result revealed conflicting systemic needs for a stable growth direction and an ability to change course in response to extracellular cues. Thus, the use of selective inhibition of microtubule growth at antiparallel overlaps constitutes a new organizing principle within a unipolar microtubule array.

Original languageEnglish
Article numbere202202018
JournalThe Journal of cell biology
Volume222
Issue number9
DOIs
Publication statusPublished - 4 Sept 2023

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