Protein Domain : IPR002041

Type:  Family Name:  Ran GTPase
Description:  Small GTPases form an independent superfamily within the larger class of regulatory GTP hydrolases. This superfamily contains proteins that control avast number of important processes and possess a common, structurally preserved GTP-binding domain [], []. Sequence comparisons of small G proteinsfrom various species have revealed that they are conserved in primary structures at the level of 30-55% similarity [].Crystallographic analysis of various small G proteins revealed the presence of a 20 kDa catalytic domain that is unique for the whole superfamily [], []. The domain is built of five alpha helices (A1-A5), sixbeta-strands (B1-B6) and five polypeptide loops (G1-G5). A structural comparison of the GTP- and GDP-bound form, allows one to distinguish twofunctional loop regions: switch I and switch II that surround the gamma-phosphate group of the nucleotide. The G1 loop (also called the P-loop)that connects the B1 strand and the A1 helix is responsible for the binding of the phosphate groups. The G3 loop provides residues for Mg(2+) and phosphatebinding and is located at the N terminus of the A2 helix. The G1 and G3 loops are sequentially similar to Walker A and Walker B boxes that are found inother nucleotide binding motifs. The G2 loop connects the A1 helix and the B2 strand and contains a conserved Thr residue responsible for Mg(2+) binding.The guanine base is recognised by the G4 and G5 loops. The consensus sequence NKXD of the G4 loop contains Lys and Asp residues directly interacting withthe nucleotide. Part of the G5 loop located between B6 and A5 acts as a recognition site for the guanine base [].The small GTPase superfamily can be divided in 8 different families: Arf small GTPases. GTP-binding proteins involved in protein trafficking by modulating vesicle budding and un-coating within the Golgi apparatusRan small GTPases. GTP-binding proteins involved in nucleocytoplasmic transport. Required for the import of proteins into the nucleus and alsofor RNA export Rab small GTPases. GTP-binding proteins involved in vesicular traffic. Rho small GTPases. GTP-binding proteins that control cytoskeleton reorganisationRas small GTPases. GTP-binding proteins involved in signaling pathways Sar1 small GTPases. Small GTPase component of the coat protein complex II (COPII) which promotes the formation of transport vesicles from theendoplasmic reticulum (ER) Mitochondrial Rho (Miro). Small GTPase domain found in mitochondrial proteins involved in mitochondrial traffickingRoc small GTPases domain. Small GTPase domain always found associated with the COR domain.Ran (or TC4), is an evolutionary conserved member of the Ras superfamily of small GTPases that regulates all receptor-mediated transport between the nucleus and the cytoplasm. Ran has been implicated in a large number of processes, including nucleocytoplasmic transport, RNA synthesis, processing and export and cell cycle checkpoint control [, ]. Ran plays a crucial role in both import/export pathways and determines the directionality of nuclear transport. Import receptors (importins) bind their cargos in the cytoplasm where the concentration of RanGTP is low (due to action of RanGAP), and release their cargos in the nucleus where the concentration of RanGTP is high (due to action of RanGEF) [, ]. Export receptors (exportins) respond to RanGTP in the opposite manner. Furthermore, it has been shown that nuclear transport factor 2 (NTF2, ) stimulates efficient nuclear import of a cargo protein. NTF2 binds specifically to RanGDP and to the FXFG repeat containing nucleoporins []. Ran is generally included in the RAS 'superfamily' of small GTP-binding proteins [], but it is only slightly related to the other RAS proteins. It also differs from RAS proteins in that it lacks cysteine residues at its C-terminal and is therefore not subject to prenylation. Instead, Ran has an acidic C terminus. It is, however, similar to RAS family members in requiring a specific guanine nucleotide exchange factor (GEF) and a specific GTPase activating protein (GAP) as stimulators of overall GTPase activity.Ran consists of a core domain that is structurally similar to the GTP-binding domains of other small GTPases but, in addition, Ran has a C-terminal extension consisting of an unstructured linker and a 16 residue alpha-helix that is located opposite the "Switch I" region in the RanGDP structure []. Three regions of Ran change conformation depending on the nucleotide bound, the Switch I and II regions, which interact with the bound nucleotide, as well as the C-terminal extension. In RanGDP, the C-terminal extension contacts the core of the protein, while in RanGTP, the extension is extending away from the core, most likely due to a steric clash between the switch I region and the linker part of the C-terminal extension. This suggests that the C-terminal extension in RanGDP is crucial for shielding residues in the core domain and preventing the switch regions from adopting a GTP-like form. This prevents binding of transport factors to RanGDP that would otherwise lead to uncoordinated interaction between importin beta-like proteins and cellular factors. Short Name:  Ran_GTPase

0 Child Features

0 Contains

3 Cross Referencess

Identifier
PR00627
PS51418
SM00176

0 Found In

5 GO Annotations

GO Term Gene Name
GO:0003924 IPR002041
GO:0005525 IPR002041
GO:0006886 IPR002041
GO:0006913 IPR002041
GO:0007165 IPR002041

5 Ontology Annotations

GO Term Gene Name
GO:0003924 IPR002041
GO:0005525 IPR002041
GO:0006886 IPR002041
GO:0006913 IPR002041
GO:0007165 IPR002041

0 Parent Features

3256 Proteins

DB identifier UniProt Accession Secondary Identifier Organism Name Length
148444 PAC:15407713 Selaginella moellendorffii 208  
270966 D8RMS2 PAC:15401850 Selaginella moellendorffii 221  
230104 D8QUM7 PAC:15411493 Selaginella moellendorffii 214  
442026 D8RQQ9 PAC:15407577 Selaginella moellendorffii 221  
228214 D8RRT7 PAC:15406054 Selaginella moellendorffii 207  
103446 PAC:15409028 Selaginella moellendorffii 197  
439463 D8R4N2 PAC:15401774 Selaginella moellendorffii 210  
158820 D8SVZ0 PAC:15418025 Selaginella moellendorffii 216  
145680 D8RBQ4 PAC:15422884 Selaginella moellendorffii 209  
4884 PAC:15419022 Selaginella moellendorffii 165  
230012 D8QTV5 PAC:15410756 Selaginella moellendorffii 218  
145965 D8RCP6 PAC:15402847 Selaginella moellendorffii 216  
146310 D8RE14 PAC:15423345 Selaginella moellendorffii 217  
evm.TU.contig_41614.1 PAC:16431634 Carica papaya 216  
evm.model.supercontig_130.67 PAC:16407974 Carica papaya 211  
evm.model.supercontig_131.26 PAC:16408019 Carica papaya 199  
evm.model.supercontig_131.82 PAC:16408081 Carica papaya 217  
evm.model.supercontig_191.15 PAC:16412163 Carica papaya 187  
evm.model.supercontig_230.2 PAC:16414316 Carica papaya 207  
evm.model.supercontig_26.123 PAC:16415054 Carica papaya 185  
evm.model.supercontig_27.195 PAC:16415573 Carica papaya 211  
evm.model.supercontig_27.257 PAC:16415642 Carica papaya 222  
evm.model.supercontig_3.407 PAC:16416710 Carica papaya 223  
evm.model.supercontig_427.2 PAC:16419893 Carica papaya 221  
evm.model.supercontig_52.66 PAC:16422091 Carica papaya 207  
evm.model.supercontig_53.125 PAC:16422187 Carica papaya 206  
evm.model.supercontig_53.163 PAC:16422229 Carica papaya 212  
evm.model.supercontig_6.287 PAC:16423472 Carica papaya 197  
evm.model.supercontig_62.138 PAC:16423937 Carica papaya 206  
evm.model.supercontig_7.11 PAC:16425009 Carica papaya 217  

11 Publications

First Author Title Year Journal Volume Pages PubMed ID
            12019565
            1898771
            17170104
            2029511
            11995995
            2196171
            2122258
            8851043
            7885480
            10698256
            12051861