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A0A1D2V8E5 A0A1D2V8E5 A0A1D2V8G5 A0A1D2V8G5 A0A1D2V8R7 A0A1D2V8R7 A0A1D2V8T2 A0A1D2V8T2 A0A1D2V8X4 A0A1D2V8X4 A0A1D2V959 A0A1D2V959 A0A1D2V9A2 A0A1D2V9A2 A0A1D2V9G5 A0A1D2V9G5 A0A1D2V9K8 A0A1D2V9K8 A0A1D2V9M3 A0A1D2V9M3 A0A1D2V9Q1 A0A1D2V9Q1 A0A1D2V9X5 A0A1D2V9X5 A0A1D2V9X7 A0A1D2V9X7 A0A1D2VA26 A0A1D2VA26 A0A1D2VB90 A0A1D2VB90 A0A1D2VBA5 A0A1D2VBA5 A0A1D2VBV5 A0A1D2VBV5 A0A1D2VBW0 A0A1D2VBW0 A0A1D2VBW3 A0A1D2VBW3 A0A1D2VC08 A0A1D2VC08 A0A1D2VC47 A0A1D2VC47 A0A1D2VC96 A0A1D2VC96 A0A1D2VD25 A0A1D2VD25 A0A1D2VD43 A0A1D2VD43 A0A1D2VD62 A0A1D2VD62 A0A1D2VDK1 A0A1D2VDK1 A0A1D2VDL1 A0A1D2VDL1 A0A1D2VDM2 A0A1D2VDM2 A0A1D2VDP2 A0A1D2VDP2 MCM7 MCM7 A0A1D2VE60 A0A1D2VE60 A0A1D2VE73 A0A1D2VE73 A0A1D2VE95 A0A1D2VE95 A0A1D2VEN5 A0A1D2VEN5 A0A1D2VFE0 A0A1D2VFE0 A0A1D2VFI4 A0A1D2VFI4 A0A1D2VFM3 A0A1D2VFM3 A0A1D2VFR8 A0A1D2VFR8 A0A1D2VFS1 A0A1D2VFS1 A0A1D2VG64 A0A1D2VG64 A0A1D2VGH0 A0A1D2VGH0 A0A1D2VGP7 A0A1D2VGP7 A0A1D2VGR5 A0A1D2VGR5 A0A1D2VGT8 A0A1D2VGT8 A0A1D2VGW6 A0A1D2VGW6 A0A1D2VHC6 A0A1D2VHC6 A0A1D2VHD2 A0A1D2VHD2 A0A1D2VIH1 A0A1D2VIH1 A0A1D2VIP1 A0A1D2VIP1 A0A1D2VIV0 A0A1D2VIV0 A0A1D2VIX6 A0A1D2VIX6 A0A1D2VJE1 A0A1D2VJE1 A0A1D2VJV1 A0A1D2VJV1 A0A1D2VJV5 A0A1D2VJV5 A0A1D2VJW2 A0A1D2VJW2 A0A1D2VK16 A0A1D2VK16 A0A1D2VK18 A0A1D2VK18 A0A1D2VK52 A0A1D2VK52 A0A1D2VKD1 A0A1D2VKD1 A0A1D2VKG4 A0A1D2VKG4 A0A1D2VKM9 A0A1D2VKM9 A0A1D2VKN7 A0A1D2VKN7 A0A1D2VKX0 A0A1D2VKX0 A0A1D2VL10 A0A1D2VL10 A0A1D2VL85 A0A1D2VL85 A0A1D2VL95 A0A1D2VL95 A0A1D2VLC2 A0A1D2VLC2 A0A1D2VLN4 A0A1D2VLN4 A0A1D2VLQ3 A0A1D2VLQ3 A0A1D2VLR4 A0A1D2VLR4 A0A1D2VME6 A0A1D2VME6 A0A1D2VNV3 A0A1D2VNV3 A0A1D2VP10 A0A1D2VP10 A0A1D2VP20 A0A1D2VP20 A0A1D2VP65 A0A1D2VP65 A0A1D2VP83 A0A1D2VP83 A0A1D2VP93 A0A1D2VP93 A0A1D2VPL6 A0A1D2VPL6 A0A1D2VQK1 A0A1D2VQK1 A0A1D2VRA9 A0A1D2VRA9 A0A1D2VRP0 A0A1D2VRP0 A0A1D2VRQ5 A0A1D2VRQ5 A0A1D2VRR1 A0A1D2VRR1 A0A1D2VS28 A0A1D2VS28 A0A1D2VS65 A0A1D2VS65 A0A1D2VSC7 A0A1D2VSC7 A0A1D2VSG8 A0A1D2VSG8 A0A1D2VSI6 A0A1D2VSI6
Nodes:
Network nodes represent proteins
splice isoforms or post-translational modifications are collapsed, i.e. each node represents all the proteins produced by a single, protein-coding gene locus.
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colored nodes:
query proteins and first shell of interactors
white nodes:
second shell of interactors
Node Content
empty nodes:
proteins of unknown 3D structure
filled nodes:
a 3D structure is known or predicted
Edges:
Edges represent protein-protein associations
associations are meant to be specific and meaningful, i.e. proteins jointly contribute to a shared function; this does not necessarily mean they are physically binding to each other.
Known Interactions
from curated databases
experimentally determined
Predicted Interactions
gene neighborhood
gene fusions
gene co-occurrence
Others
textmining
co-expression
protein homology
Your Input:
A0A1D2V8E5DNA damage-binding protein CMR1; DNA-binding protein that binds to both single- and double- stranded DNA. Binds preferentially to UV-damaged DNA. May be involved in DNA-metabolic processes. (548 aa)
A0A1D2V8G5Alpha box domain-containing protein. (221 aa)
A0A1D2V8R7Histone H3; Belongs to the histone H3 family. (136 aa)
A0A1D2V8T2Homeobox domain-containing protein. (137 aa)
A0A1D2V8X4Homeobox domain-containing protein. (305 aa)
A0A1D2V959Zn(2)-C6 fungal-type domain-containing protein. (840 aa)
A0A1D2V9A2Homeobox domain-containing protein. (274 aa)
A0A1D2V9G5Zn(2)-C6 fungal-type domain-containing protein. (622 aa)
A0A1D2V9K8Zn(2)-C6 fungal-type domain-containing protein. (1300 aa)
A0A1D2V9M3Zn(2)-C6 fungal-type domain-containing protein. (1467 aa)
A0A1D2V9Q1DNA polymerase. (1030 aa)
A0A1D2V9X5Zn(2)-C6 fungal-type domain-containing protein. (839 aa)
A0A1D2V9X7DNA-binding protein. (254 aa)
A0A1D2VA26Zn(2)-C6 fungal-type domain-containing protein. (1221 aa)
A0A1D2VB90DNA primase large subunit; DNA primase is the polymerase that synthesizes small RNA primers for the Okazaki fragments made during discontinuous DNA replication; Belongs to the eukaryotic-type primase large subunit family. (517 aa)
A0A1D2VBA5DNA-binding protein. (764 aa)
A0A1D2VBV5DNA helicase; Belongs to the MCM family. (967 aa)
A0A1D2VBW0Zn(2)-C6 fungal-type domain-containing protein. (1001 aa)
A0A1D2VBW3Winged helix DNA-binding domain-containing protein. (202 aa)
A0A1D2VC08Zn(2)-C6 fungal-type domain-containing protein. (1058 aa)
A0A1D2VC47Homeodomain-like protein. (192 aa)
A0A1D2VC96P53-like transcription factor. (255 aa)
A0A1D2VD25Homeobox domain-containing protein. (313 aa)
A0A1D2VD43HMG box domain-containing protein. (417 aa)
A0A1D2VD62Histone H2A; Belongs to the histone H2A family. (138 aa)
A0A1D2VDK1HMG box domain-containing protein. (175 aa)
A0A1D2VDL1Homeobox domain-containing protein. (956 aa)
A0A1D2VDM2Zn(2)-C6 fungal-type domain-containing protein. (1646 aa)
A0A1D2VDP2Histone H2B; Belongs to the histone H2B family. (130 aa)
MCM7DNA replication licensing factor MCM7; Acts as component of the mcm2-7 complex (mcm complex) which is the putative replicative helicase essential for 'once per cell cycle' DNA replication initiation and elongation in eukaryotic cells. The active ATPase sites in the mcm2-7 ring are formed through the interaction surfaces of two neighboring subunits such that a critical structure of a conserved arginine finger motif is provided in trans relative to the ATP-binding site of the Walker A box of the adjacent subunit. The six ATPase active sites, however, are likely to contribute differential [...] (828 aa)
A0A1D2VE60Fungal_trans domain-containing protein. (1264 aa)
A0A1D2VE73Histone H2A; Belongs to the histone H2A family. (137 aa)
A0A1D2VE95HSF_DOMAIN domain-containing protein. (1034 aa)
A0A1D2VEN5DNA topoisomerase; Introduces a single-strand break via transesterification at a target site in duplex DNA. Releases the supercoiling and torsional tension of DNA introduced during the DNA replication and transcription by transiently cleaving and rejoining one strand of the DNA duplex. The scissile phosphodiester is attacked by the catalytic tyrosine of the enzyme, resulting in the formation of a DNA-(5'-phosphotyrosyl)-enzyme intermediate and the expulsion of a 3'-OH DNA strand. Belongs to the type IA topoisomerase family. (626 aa)
A0A1D2VFE0HSF_DOMAIN domain-containing protein. (717 aa)
A0A1D2VFI4Winged helix DNA-binding domain-containing protein. (257 aa)
A0A1D2VFM3Glucocorticoid receptor-like (DNA-binding domain). (115 aa)
A0A1D2VFR8Uncharacterized protein. (176 aa)
A0A1D2VFS1SRF-TF-domain-containing protein. (98 aa)
A0A1D2VG64DNA helicase. (717 aa)
A0A1D2VGH0Zn(2)-C6 fungal-type domain-containing protein. (957 aa)
A0A1D2VGP7DNA polymerase. (1435 aa)
A0A1D2VGR5Uncharacterized protein. (643 aa)
A0A1D2VGT8MCM-domain-containing protein; Belongs to the MCM family. (665 aa)
A0A1D2VGW6DNA-binding domain of Mlu1-box binding protein MBP1. (113 aa)
A0A1D2VHC6Replication protein A subunit; As part of the replication protein A (RPA/RP-A), a single- stranded DNA-binding heterotrimeric complex, may play an essential role in DNA replication, recombination and repair. Binds and stabilizes single-stranded DNA intermediates, preventing complementary DNA reannealing and recruiting different proteins involved in DNA metabolism. (635 aa)
A0A1D2VHD2Zn(2)-C6 fungal-type domain-containing protein. (1837 aa)
A0A1D2VIH1DNA polymerase. (1575 aa)
A0A1D2VIP1DNA mismatch repair protein; Component of the post-replicative DNA mismatch repair system (MMR). (987 aa)
A0A1D2VIV0Transcription initiation factor IIE subunit beta; Recruits TFIIH to the initiation complex and stimulates the RNA polymerase II C-terminal domain kinase and DNA-dependent ATPase activities of TFIIH. Both TFIIH and TFIIE are required for promoter clearance by RNA polymerase. (311 aa)
A0A1D2VIX6Glucocorticoid receptor-like (DNA-binding domain). (50 aa)
A0A1D2VJE1DNA helicase; Belongs to the MCM family. (1191 aa)
A0A1D2VJV1HMG box domain-containing protein. (117 aa)
A0A1D2VJV5DNA mismatch repair protein; Component of the post-replicative DNA mismatch repair system (MMR). (1312 aa)
A0A1D2VJW2Zn(2)-C6 fungal-type domain-containing protein. (899 aa)
A0A1D2VK16Fork-head domain-containing protein. (999 aa)
A0A1D2VK18Response regulatory domain-containing protein. (377 aa)
A0A1D2VK52Zn(2)-C6 fungal-type domain-containing protein. (803 aa)
A0A1D2VKD1Nucleic acid-binding protein. (142 aa)
A0A1D2VKG4Proliferating cell nuclear antigen; This protein is an auxiliary protein of DNA polymerase delta and is involved in the control of eukaryotic DNA replication by increasing the polymerase's processibility during elongation of the leading strand; Belongs to the PCNA family. (257 aa)
A0A1D2VKM9Zn(2)-C6 fungal-type domain-containing protein. (946 aa)
A0A1D2VKN7DNA helicase; Belongs to the MCM family. (865 aa)
A0A1D2VKX0Zn(2)-C6 fungal-type domain-containing protein. (957 aa)
A0A1D2VL10Zn(2)-C6 fungal-type domain-containing protein. (1080 aa)
A0A1D2VL85DNA-binding protein. (240 aa)
A0A1D2VL95Winged helix DNA-binding domain-containing protein. (160 aa)
A0A1D2VLC2DNA mismatch repair protein; Component of the post-replicative DNA mismatch repair system (MMR). (1296 aa)
A0A1D2VLN4Homeobox domain-containing protein. (512 aa)
A0A1D2VLQ3Histone H3; Belongs to the histone H3 family. (136 aa)
A0A1D2VLR4DNA topoisomerase I; Releases the supercoiling and torsional tension of DNA introduced during the DNA replication and transcription by transiently cleaving and rejoining one strand of the DNA duplex. Introduces a single-strand break via transesterification at the specific target site 5'-[CT]CCTTp site in duplex DNA. The scissile phosphodiester is attacked by the catalytic tyrosine of the enzyme, resulting in the formation of a DNA-(3'-phosphotyrosyl)-enzyme intermediate and the expulsion of a 5'-OH DNA strand. The free DNA strand then undergoes passage around the unbroken strand thus r [...] (792 aa)
A0A1D2VME6HMG box domain-containing protein. (389 aa)
A0A1D2VNV3Histone-fold-containing protein. (152 aa)
A0A1D2VP10Uncharacterized protein. (467 aa)
A0A1D2VP20Origin recognition complex subunit 1; Component of the origin recognition complex (ORC) that binds origins of replication. DNA-binding is ATP-dependent, however specific DNA sequences that define origins of replication have not been identified so far. ORC is required to assemble the pre-replication complex necessary to initiate DNA replication. (900 aa)
A0A1D2VP65Histone H2A; Belongs to the histone H2A family. (134 aa)
A0A1D2VP83Histone H2B; Belongs to the histone H2B family. (132 aa)
A0A1D2VP93Dna-binding domain of Mbp1. (99 aa)
A0A1D2VPL6HMG box domain-containing protein. (99 aa)
A0A1D2VQK1Zn(2)-C6 fungal-type domain-containing protein. (1117 aa)
A0A1D2VRA9DNA topoisomerase 2; Control of topological states of DNA by transient breakage and subsequent rejoining of DNA strands. Topoisomerase II makes double- strand breaks. (1280 aa)
A0A1D2VRP0Curved DNA-binding protein. (409 aa)
A0A1D2VRQ5Glucocorticoid receptor-like (DNA-binding domain). (73 aa)
A0A1D2VRR1The Dna binding domain of the heat shock transcription factor. (88 aa)
A0A1D2VS28DNA polymerase epsilon catalytic subunit; DNA polymerase II participates in chromosomal DNA replication; Belongs to the DNA polymerase type-B family. (2144 aa)
A0A1D2VS65Zn(2)-C6 fungal-type domain-containing protein. (617 aa)
A0A1D2VSC7Histone H4; Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling. (103 aa)
A0A1D2VSG8Zn(2)-C6 fungal-type domain-containing protein. (1695 aa)
A0A1D2VSI6DNA mismatch repair protein; Component of the post-replicative DNA mismatch repair system (MMR). (1194 aa)
Your Current Organism:
Ascoidea rubescens
NCBI taxonomy Id: 1344418
Other names: A. rubescens DSM 1968, Ascoidea rubescens DSM 1968
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