REAP1/AtSWAP70 integrates RAB5 and ROP signalling during sexual reproduction

Small GTPases of the Ras superfamily are critical regulators of diverse cellular processes. While crosstalk between their signalling pathways has been documented in animals, similar mechanisms remain unexplored in plants, where small GTPases have undergone unique evolutionary diversification. Here we identify REAP1/AtSWAP70 as an effector in Arabidopsis thaliana that interacts with the active forms of both canonical RAB5 and the plant-specific RAB5, ARA6. Remarkably, REAP1 also binds to active ROP7, a plant-unique Rac-type GTPase, via its Dbl homology domain. REAP1 localizes to endosomes and facilitates ROP7 recruitment from the plasma membrane, a process dependent on RAB5 activity. Genetic analyses reveal that the RAB5–REAP1–ROP7 signalling cascade is essential for gametogenesis, impacting pollen viability and development. This study provides evidence of functional crosstalk between RAB and ROP signalling in plants, unveiling a layer of regulatory complexity in plant GTPase signalling during plant reproduction. The RAB5 effector REAP1/AtSWAP70 connects endosomal trafficking to ROP signalling by regulating active ROP7 localization. This pathway contributes to gametophyte development and involves crosstalk between two major GTPase systems in plants.

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Publication Details

Journal
Nature Plants
Published
2026-09-17
DOI
https://doi.org/10.1038/s41477-026-02368-8
Citations
1
Primary Topic
Plant Reproductive Biology
Type
article
Field-Weighted Citation Impact
2.72

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article

REAP1/AtSWAP70 integrates RAB5 and ROP signalling during sexual reproduction

Tomoko Hirano, Kazuo Ebine, Emi Ito, Masa H. Sato et al.
1 citations
Nature Plants
Plant Reproductive Biology
2.72
article

REAP1/AtSWAP70 integrates RAB5 and ROP signalling during sexual reproduction

Tomoko Hirano, Kazuo Ebine, Emi Ito, Masa H. Sato, Yoshihisa Oda, Akihiko Nakano, Takashi Ueda, Tomohiro Uemura, Yoko Ito, NATALIA JULIA RZEPECKA
article en
1 citations

Abstract

Small GTPases of the Ras superfamily are critical regulators of diverse cellular processes. While crosstalk between their signalling pathways has been documented in animals, similar mechanisms remain unexplored in plants, where small GTPases have undergone unique evolutionary diversification. Here we identify REAP1/AtSWAP70 as an effector in Arabidopsis thaliana that interacts with the active forms of both canonical RAB5 and the plant-specific RAB5, ARA6. Remarkably, REAP1 also binds to active ROP7, a plant-unique Rac-type GTPase, via its Dbl homology domain. REAP1 localizes to endosomes and facilitates ROP7 recruitment from the plasma membrane, a process dependent on RAB5 activity. Genetic analyses reveal that the RAB5–REAP1–ROP7 signalling cascade is essential for gametogenesis, impacting pollen viability and development. This study provides evidence of functional crosstalk between RAB and ROP signalling in plants, unveiling a layer of regulatory complexity in plant GTPase signalling during plant reproduction. The RAB5 effector REAP1/AtSWAP70 connects endosomal trafficking to ROP signalling by regulating active ROP7 localization. This pathway contributes to gametophyte development and involves crosstalk between two major GTPase systems in plants.

Nature PlantsVol. 12(9)
Tokyo Institute of Technology (JP), National Institute for Basic Biology (JP), Kyoto Prefectural University (JP), The Graduate University for Advanced Studies, SOKENDAI (JP), Ochanomizu University (JP), Suntory (Japan) (JP), RIKEN Center for Advanced Photonics (JP), Nagoya University (JP), Saitama University (JP)
Takeda Science Foundation, Asahi Glass Foundation, Ministry of Education, Culture, Sports, Science and Technology, Japan Society for the Promotion of Science, Core Research for Evolutional Science and Technology, Exploratory Research for Advanced Technology
Openalex Percentile: Top 7%
Plant Reproductive Biology
2.72
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