cytoplasmic dynein 1 light intermediate chain 2 isoform 2 [Homo sapiens]
dynein light intermediate chain family protein( domain architecture ID 706898)
dynein light intermediate chain (DLIC) family protein is a non-catalytic accessory component of the cytoplasmic dynein complex and may be involved in linking dynein to cargos and to adapter proteins that regulate dynein function
List of domain hits
Name | Accession | Description | Interval | E-value | |||||||
DLIC super family | cl25911 | Dynein light intermediate chain (DLIC); This family consists of several eukaryotic dynein ... |
30-411 | 0e+00 | |||||||
Dynein light intermediate chain (DLIC); This family consists of several eukaryotic dynein light intermediate chain proteins. The light intermediate chains (LICs) of cytoplasmic dynein consist of multiple isoforms, which undergo post-translational modification to produce a large number of species. DLIC1 is known to be involved in assembly, organization, and function of centrosomes and mitotic spindles when bound to pericentrin. DLIC2 is a subunit of cytoplasmic dynein 2 that may play a role in maintaining Golgi organization by binding cytoplasmic dynein 2 to its Golgi-associated cargo. The actual alignment was detected with superfamily member pfam05783: Pssm-ID: 368612 Cd Length: 468 Bit Score: 710.46 E-value: 0e+00
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Name | Accession | Description | Interval | E-value | |||||||
DLIC | pfam05783 | Dynein light intermediate chain (DLIC); This family consists of several eukaryotic dynein ... |
30-411 | 0e+00 | |||||||
Dynein light intermediate chain (DLIC); This family consists of several eukaryotic dynein light intermediate chain proteins. The light intermediate chains (LICs) of cytoplasmic dynein consist of multiple isoforms, which undergo post-translational modification to produce a large number of species. DLIC1 is known to be involved in assembly, organization, and function of centrosomes and mitotic spindles when bound to pericentrin. DLIC2 is a subunit of cytoplasmic dynein 2 that may play a role in maintaining Golgi organization by binding cytoplasmic dynein 2 to its Golgi-associated cargo. Pssm-ID: 368612 Cd Length: 468 Bit Score: 710.46 E-value: 0e+00
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Ras_like_GTPase | cd00882 | Rat sarcoma (Ras)-like superfamily of small guanosine triphosphatases (GTPases); Ras-like ... |
58-212 | 5.03e-08 | |||||||
Rat sarcoma (Ras)-like superfamily of small guanosine triphosphatases (GTPases); Ras-like GTPase superfamily. The Ras-like superfamily of small GTPases consists of several families with an extremely high degree of structural and functional similarity. The Ras superfamily is divided into at least four families in eukaryotes: the Ras, Rho, Rab, and Sar1/Arf families. This superfamily also includes proteins like the GTP translation factors, Era-like GTPases, and G-alpha chain of the heterotrimeric G proteins. Members of the Ras superfamily regulate a wide variety of cellular functions: the Ras family regulates gene expression, the Rho family regulates cytoskeletal reorganization and gene expression, the Rab and Sar1/Arf families regulate vesicle trafficking, and the Ran family regulates nucleocytoplasmic transport and microtubule organization. The GTP translation factor family regulates initiation, elongation, termination, and release in translation, and the Era-like GTPase family regulates cell division, sporulation, and DNA replication. Members of the Ras superfamily are identified by the GTP binding site, which is made up of five characteristic sequence motifs, and the switch I and switch II regions. Pssm-ID: 206648 [Multi-domain] Cd Length: 161 Bit Score: 52.07 E-value: 5.03e-08
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RAD55 | COG0467 | RecA-superfamily ATPase, KaiC/GvpD/RAD55 family [Signal transduction mechanisms]; |
51-196 | 6.92e-06 | |||||||
RecA-superfamily ATPase, KaiC/GvpD/RAD55 family [Signal transduction mechanisms]; Pssm-ID: 440235 [Multi-domain] Cd Length: 221 Bit Score: 46.83 E-value: 6.92e-06
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PRK10851 | PRK10851 | sulfate/thiosulfate ABC transporter ATP-binding protein CysA; |
39-107 | 1.23e-03 | |||||||
sulfate/thiosulfate ABC transporter ATP-binding protein CysA; Pssm-ID: 182778 [Multi-domain] Cd Length: 353 Bit Score: 40.84 E-value: 1.23e-03
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Name | Accession | Description | Interval | E-value | |||||||
DLIC | pfam05783 | Dynein light intermediate chain (DLIC); This family consists of several eukaryotic dynein ... |
30-411 | 0e+00 | |||||||
Dynein light intermediate chain (DLIC); This family consists of several eukaryotic dynein light intermediate chain proteins. The light intermediate chains (LICs) of cytoplasmic dynein consist of multiple isoforms, which undergo post-translational modification to produce a large number of species. DLIC1 is known to be involved in assembly, organization, and function of centrosomes and mitotic spindles when bound to pericentrin. DLIC2 is a subunit of cytoplasmic dynein 2 that may play a role in maintaining Golgi organization by binding cytoplasmic dynein 2 to its Golgi-associated cargo. Pssm-ID: 368612 Cd Length: 468 Bit Score: 710.46 E-value: 0e+00
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Ras_like_GTPase | cd00882 | Rat sarcoma (Ras)-like superfamily of small guanosine triphosphatases (GTPases); Ras-like ... |
58-212 | 5.03e-08 | |||||||
Rat sarcoma (Ras)-like superfamily of small guanosine triphosphatases (GTPases); Ras-like GTPase superfamily. The Ras-like superfamily of small GTPases consists of several families with an extremely high degree of structural and functional similarity. The Ras superfamily is divided into at least four families in eukaryotes: the Ras, Rho, Rab, and Sar1/Arf families. This superfamily also includes proteins like the GTP translation factors, Era-like GTPases, and G-alpha chain of the heterotrimeric G proteins. Members of the Ras superfamily regulate a wide variety of cellular functions: the Ras family regulates gene expression, the Rho family regulates cytoskeletal reorganization and gene expression, the Rab and Sar1/Arf families regulate vesicle trafficking, and the Ran family regulates nucleocytoplasmic transport and microtubule organization. The GTP translation factor family regulates initiation, elongation, termination, and release in translation, and the Era-like GTPase family regulates cell division, sporulation, and DNA replication. Members of the Ras superfamily are identified by the GTP binding site, which is made up of five characteristic sequence motifs, and the switch I and switch II regions. Pssm-ID: 206648 [Multi-domain] Cd Length: 161 Bit Score: 52.07 E-value: 5.03e-08
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RAD55 | COG0467 | RecA-superfamily ATPase, KaiC/GvpD/RAD55 family [Signal transduction mechanisms]; |
51-196 | 6.92e-06 | |||||||
RecA-superfamily ATPase, KaiC/GvpD/RAD55 family [Signal transduction mechanisms]; Pssm-ID: 440235 [Multi-domain] Cd Length: 221 Bit Score: 46.83 E-value: 6.92e-06
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PRK10851 | PRK10851 | sulfate/thiosulfate ABC transporter ATP-binding protein CysA; |
39-107 | 1.23e-03 | |||||||
sulfate/thiosulfate ABC transporter ATP-binding protein CysA; Pssm-ID: 182778 [Multi-domain] Cd Length: 353 Bit Score: 40.84 E-value: 1.23e-03
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YjeQ_EngC | cd01854 | Ribosomal interacting GTPase YjeQ/EngC, a circularly permuted subfamily of the Ras GTPases; ... |
141-217 | 1.69e-03 | |||||||
Ribosomal interacting GTPase YjeQ/EngC, a circularly permuted subfamily of the Ras GTPases; YjeQ (YloQ in Bacillus subtilis) is a ribosomal small subunit-dependent GTPase; hence also known as RsgA. YjeQ is a late-stage ribosomal biogenesis factor involved in the 30S subunit maturation, and it represents a protein family whose members are broadly conserved in bacteria and have been shown to be essential to the growth of E. coli and B. subtilis. Proteins of the YjeQ family contain all sequence motifs typical of the vast class of P-loop-containing GTPases, but show a circular permutation, with a G4-G1-G3 pattern of motifs as opposed to the regular G1-G3-G4 pattern seen in most GTPases. All YjeQ family proteins display a unique domain architecture, which includes an N-terminal OB-fold RNA-binding domain, the central permuted GTPase domain, and a zinc knuckle-like C-terminal cysteine domain. Pssm-ID: 206747 [Multi-domain] Cd Length: 211 Bit Score: 39.69 E-value: 1.69e-03
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VirB11-like_ATPase | cd01130 | Type IV secretory pathway component VirB11-like; Type IV secretory pathway component VirB11, ... |
53-71 | 2.35e-03 | |||||||
Type IV secretory pathway component VirB11-like; Type IV secretory pathway component VirB11, and related ATPases. The homohexamer, VirB11 is one of eleven Vir (virulence) proteins, which are required for T-pilus biogenesis and virulence in the transfer of T-DNA from the bacterial Ti (tumor-inducing)-plasmid into plant cells. The pilus is a fibrous cell surface organelle, which mediates adhesion between bacteria during conjugative transfer or between bacteria and host eukaryotic cells during infection. VirB11-related ATPases include Sulfolobus acidocaldarius FlaI, which plays key roles in archaellum (archaeal flagellum) assembly and motility functions, and the pilus assembly proteins CpaF/TadA and TrbB. This alignment contains the C-terminal domain, which is the ATPase. Pssm-ID: 410874 [Multi-domain] Cd Length: 177 Bit Score: 38.68 E-value: 2.35e-03
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YihA_EngB | cd01876 | YihA (EngB) GTPase family; The YihA (EngB) subfamily of GTPases is typified by the E. coli ... |
144-214 | 3.97e-03 | |||||||
YihA (EngB) GTPase family; The YihA (EngB) subfamily of GTPases is typified by the E. coli YihA, an essential protein involved in cell division control. YihA and its orthologs are small proteins that typically contain less than 200 amino acid residues and consists of the GTPase domain only (some of the eukaryotic homologs contain an N-terminal extension of about 120 residues that might be involved in organellar targeting). Homologs of yihA are found in most Gram-positive and Gram-negative pathogenic bacteria, with the exception of Mycobacterium tuberculosis. The broad-spectrum nature of YihA and its essentiality for cell viability in bacteria make it an attractive antibacterial target. Pssm-ID: 206665 [Multi-domain] Cd Length: 170 Bit Score: 37.88 E-value: 3.97e-03
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