Regulation of local GTP availability controls RAC1 activity and cell invasion.

dc.contributor.author

Bianchi-Smiraglia, Anna

dc.contributor.author

Wolff, David W

dc.contributor.author

Marston, Daniel J

dc.contributor.author

Deng, Zhiyong

dc.contributor.author

Han, Zhannan

dc.contributor.author

Moparthy, Sudha

dc.contributor.author

Wombacher, Rebecca M

dc.contributor.author

Mussell, Ashley L

dc.contributor.author

Shen, Shichen

dc.contributor.author

Chen, Jialin

dc.contributor.author

Yun, Dong-Hyun

dc.contributor.author

O'Brien Cox, Anderson

dc.contributor.author

Furdui, Cristina M

dc.contributor.author

Hurley, Edward

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Feltri, Maria Laura

dc.contributor.author

Qu, Jun

dc.contributor.author

Hollis, Thomas

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Kengne, Jules Berlin Nde

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Fongang, Bernard

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Sousa, Rui J

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Kandel, Mikhail E

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Kandel, Eugene S

dc.contributor.author

Hahn, Klaus M

dc.contributor.author

Nikiforov, Mikhail A

dc.date.accessioned

2023-02-03T17:07:44Z

dc.date.available

2023-02-03T17:07:44Z

dc.date.issued

2021-10

dc.date.updated

2023-02-03T17:07:44Z

dc.description.abstract

Physiological changes in GTP levels in live cells have never been considered a regulatory step of RAC1 activation because intracellular GTP concentration (determined by chromatography or mass spectrometry) was shown to be substantially higher than the in vitro RAC1 GTP dissociation constant (RAC1-GTP Kd). Here, by combining genetically encoded GTP biosensors and a RAC1 activity biosensor, we demonstrated that GTP levels fluctuating around RAC1-GTP Kd correlated with changes in RAC1 activity in live cells. Furthermore, RAC1 co-localized in protrusions of invading cells with several guanylate metabolism enzymes, including rate-limiting inosine monophosphate dehydrogenase 2 (IMPDH2), which was partially due to direct RAC1-IMPDH2 interaction. Substitution of endogenous IMPDH2 with IMPDH2 mutants incapable of binding RAC1 did not affect total intracellular GTP levels but suppressed RAC1 activity. Targeting IMPDH2 away from the plasma membrane did not alter total intracellular GTP pools but decreased GTP levels in cell protrusions, RAC1 activity, and cell invasion. These data provide a mechanism of regulation of RAC1 activity by local GTP pools in live cells.

dc.identifier

10.1038/s41467-021-26324-6

dc.identifier.issn

2041-1723

dc.identifier.issn

2041-1723

dc.identifier.uri

https://hdl.handle.net/10161/26557

dc.language

eng

dc.publisher

Springer Science and Business Media LLC

dc.relation.ispartof

Nature communications

dc.relation.isversionof

10.1038/s41467-021-26324-6

dc.subject

Cell Membrane

dc.subject

Humans

dc.subject

rac1 GTP-Binding Protein

dc.subject

IMP Dehydrogenase

dc.subject

Guanosine Triphosphate

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Cell Movement

dc.subject

Protein Binding

dc.subject

Kinetics

dc.subject

HEK293 Cells

dc.title

Regulation of local GTP availability controls RAC1 activity and cell invasion.

dc.type

Journal article

pubs.begin-page

6091

pubs.issue

1

pubs.organisational-group

Duke

pubs.organisational-group

Pratt School of Engineering

pubs.organisational-group

School of Medicine

pubs.organisational-group

Clinical Science Departments

pubs.organisational-group

Institutes and Centers

pubs.organisational-group

Biomedical Engineering

pubs.organisational-group

Pathology

pubs.organisational-group

Duke Cancer Institute

pubs.publication-status

Published

pubs.volume

12

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