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A Novel Plant Actin-Microtubule Bridging Complex Regulates Cytoskeletal and ER Structure at Endoplasmic Reticulum-Plasma Membrane Contact Sites (EPCS)

45 Pages Posted: 8 May 2020 Publication Status: Published

See all articles by Jingze Zang

Jingze Zang

Huazhong Agricultural University - Key Laboratory of Horticultural Plant Biology (MOE)

Sandra Klemm

Leibniz Institute of Plant Biochemistry

Charlotte Pain

Oxford Brookes University

Patrick Duckney

Durham University - Department of Biological Sciences

Zhiru Bao

Huazhong Agricultural University - Key Laboratory of Horticultural Plant Biology (MOE)

Gina Stamm

Leibniz Institute of Plant Biochemistry

Verena Kriechbaumer

Oxford Brookes University

Katharina Bürstenbinder

Leibniz Institute of Plant Biochemistry

Patrick J. Hussey

Durham University - Department of Biological Sciences

Pengwei Wang

Huazhong Agricultural University - Key Laboratory of Horticultural Plant Biology (MOE)

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Abstract

In plants, the cortical ER network is connected to the plasma membrane through the ER-PM contact sites (EPCS), whose structures are maintained by EPCS resident proteins and the cytoskeleton. Strong co-alignment between EPCS and the cytoskeleton is observed in plants, but little is known of how the cytoskeleton is maintained and regulated at the EPCS. Here we have used a yeast-two-hybrid screen and subsequent in vivo interaction studies in plants by FRET-FLIM analysis, to identify two microtubule binding proteins, KLCR1 (Kinesin Light Chain Related protein 1) and IQD2 (IQ67-Domain 2) that interact with the actin binding protein NET3C and form a component of plant EPCS, that mediates the link between the actin and microtubule networks. The NET3C-KLCR1-IQD2 module, acting as an actin-microtubule bridging complex, has a direct influence on ER morphology. Their loss of function mutants, net3a/NET3C RNAi, 0klcr1 or iqd2, exhibit defects in pavement cell morphology which we suggest is linked to the disorganization of both actin filaments and microtubules. In conclusion, our results reveal a novel cytoskeletal associated complex, which is essential for the maintenance and organization of both cytoskeletal structure and ER morphology at the EPCS, and for normal plant cell morphogenesis.

Keywords: ER-PM contact sites, Cytoskeletons, Endoplasmic reticulum, NET family, IQ67-Domain 2 family

Suggested Citation

Zang, Jingze and Klemm, Sandra and Pain, Charlotte and Duckney, Patrick and Bao, Zhiru and Stamm, Gina and Kriechbaumer, Verena and Bürstenbinder, Katharina and Hussey, Patrick J. and Wang, Pengwei, A Novel Plant Actin-Microtubule Bridging Complex Regulates Cytoskeletal and ER Structure at Endoplasmic Reticulum-Plasma Membrane Contact Sites (EPCS). Available at SSRN: https://ssrn.com/abstract=3581370 or http://dx.doi.org/10.2139/ssrn.3581370
This version of the paper has not been formally peer reviewed.

Jingze Zang

Huazhong Agricultural University - Key Laboratory of Horticultural Plant Biology (MOE) ( email )

China

Sandra Klemm

Leibniz Institute of Plant Biochemistry ( email )

Germany

Charlotte Pain

Oxford Brookes University

Gipsy Lane
Headington
Oxon. OX33 1HX, OX3 0BP
United Kingdom

Patrick Duckney

Durham University - Department of Biological Sciences

Old Elvet
Mill Hill Lane
Durham, Durham DH1 3HP
United Kingdom

Zhiru Bao

Huazhong Agricultural University - Key Laboratory of Horticultural Plant Biology (MOE) ( email )

China

Gina Stamm

Leibniz Institute of Plant Biochemistry

Germany

Verena Kriechbaumer

Oxford Brookes University

Gipsy Lane
Headington
Oxon. OX33 1HX, OX3 0BP
United Kingdom

Katharina Bürstenbinder

Leibniz Institute of Plant Biochemistry ( email )

Germany

Patrick J. Hussey

Durham University - Department of Biological Sciences

Old Elvet
Mill Hill Lane
Durham, Durham DH1 3HP
United Kingdom

Pengwei Wang (Contact Author)

Huazhong Agricultural University - Key Laboratory of Horticultural Plant Biology (MOE) ( email )

China

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