Target intelligence / Profile preview

GTP-binding nuclear protein Ran (RAN) (RAN)

Target
RAN
Molecular classification
Small GTPase, Ras superfamily, Ran family, Enzyme, P-loop NTPase
01

Overview

GTP-binding nuclear protein Ran (RAN), a member of the Ras superfamily of small GTPases, acts as a critical molecular switch that regulates essential cellular processes including nucleocytoplasmic transport and mitosis [4, 13]. It cycles between an active GTP-bound state and an inactive GDP-bound state, a process controlled by regulators like RCC1 in the nucleus and RanGAP1 in the cytoplasm [1, 14]. During interphase, the Ran-GTP gradient across the nuclear envelope drives the transport of proteins and RNA through the nuclear pore complex [12, 15]. In mitosis, Ran is indispensable for spindle assembly, chromosome segregation, and nuclear envelope reassembly [2, 16]. Ran is frequently overexpressed in various malignancies, such as ovarian, breast, and pancreatic cancers, where it promotes tumor progression, metastasis, and resistance to chemotherapy [8, 9, 14]. Experimental inhibitors like the small molecule M36 and specific inhibitory peptides are being developed to target Ran by locking it in its inactive state, thereby inducing apoptosis in cancer cells while potentially sparing normal tissues [11, 13]. This targeting strategy aims to disrupt the vital transport and mitotic processes that transformed cells rely on for rapid proliferation and survival.

Other names
Ras-related nuclear proteinARA24TC4GSP1GSP2Small GTP-binding protein Ran
02

Mechanism of action

Inhibition of the Ran GTPase cycle by locking the protein in its inactive GDP-bound state, thereby disrupting nucleocytoplasmic transport and mitotic spindle assembly [11, 13].

03

Biological functions

Nucleocytoplasmic transportMitosisCell cycle regulationDNA synthesisNuclear envelope reassemblySpindle assemblyChromosome segregation
04

Disease associations

CancerAlzheimer's diseaseInfectionAcute necrotizing encephalopathy
05

Safety considerations

Potential systemic toxicity due to essential role in nucleocytoplasmic transportOff-target effects on other Ras superfamily membersDisruption of normal cell division in healthy tissues
06

Interacting drugs

M36

1 more in the full profile.

07

Biomarkers

Ran protein expression levelsRanGTP levelsNuclear localization of 53BP1

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