node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
MCM7 | R1BT16_EMIHU | A0A0D3J9T2 | R1BT16 | DNA 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 [...] | MCM domain-containing protein; Belongs to the MCM family. | 0.996 |
MCM7 | R1C1R9_EMIHU | A0A0D3J9T2 | R1C1R9 | DNA 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 [...] | MCM domain-containing protein; Belongs to the MCM family. | 0.998 |
MCM7 | R1D9C5_EMIHU | A0A0D3J9T2 | R1D9C5 | DNA 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 [...] | PHD-type domain-containing protein. | 0.992 |
MCM7 | R1DEW4_EMIHU | A0A0D3J9T2 | R1DEW4 | DNA 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 [...] | AAA domain-containing protein. | 0.986 |
MCM7 | R1DFH3_EMIHU | A0A0D3J9T2 | R1DFH3 | DNA 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 [...] | Uncharacterized protein. | 0.980 |
MCM7 | R1DTQ0_EMIHU | A0A0D3J9T2 | R1DTQ0 | DNA 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 [...] | Origin 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. | 0.996 |
MCM7 | R1DYX5_EMIHU | A0A0D3J9T2 | R1DYX5 | DNA 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 [...] | EF-hand domain-containing protein. | 0.839 |
MCM7 | R1EAN3_EMIHU | A0A0D3J9T2 | R1EAN3 | DNA 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 [...] | PHD-type domain-containing protein. | 0.992 |
MCM7 | R1F8Z4_EMIHU | A0A0D3J9T2 | R1F8Z4 | DNA 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 [...] | DNA helicase; Belongs to the MCM family. | 0.998 |
MCM7 | R1G1I8_EMIHU | A0A0D3J9T2 | R1G1I8 | DNA 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 [...] | DNA helicase; Belongs to the MCM family. | 0.999 |
R1BT16_EMIHU | MCM7 | R1BT16 | A0A0D3J9T2 | MCM domain-containing protein; Belongs to the MCM family. | DNA 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 [...] | 0.996 |
R1BT16_EMIHU | R1C1R9_EMIHU | R1BT16 | R1C1R9 | MCM domain-containing protein; Belongs to the MCM family. | MCM domain-containing protein; Belongs to the MCM family. | 0.997 |
R1BT16_EMIHU | R1D9C5_EMIHU | R1BT16 | R1D9C5 | MCM domain-containing protein; Belongs to the MCM family. | PHD-type domain-containing protein. | 0.991 |
R1BT16_EMIHU | R1DEW4_EMIHU | R1BT16 | R1DEW4 | MCM domain-containing protein; Belongs to the MCM family. | AAA domain-containing protein. | 0.993 |
R1BT16_EMIHU | R1DFH3_EMIHU | R1BT16 | R1DFH3 | MCM domain-containing protein; Belongs to the MCM family. | Uncharacterized protein. | 0.990 |
R1BT16_EMIHU | R1DTQ0_EMIHU | R1BT16 | R1DTQ0 | MCM domain-containing protein; Belongs to the MCM family. | Origin 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. | 0.995 |
R1BT16_EMIHU | R1DYX5_EMIHU | R1BT16 | R1DYX5 | MCM domain-containing protein; Belongs to the MCM family. | EF-hand domain-containing protein. | 0.852 |
R1BT16_EMIHU | R1EAN3_EMIHU | R1BT16 | R1EAN3 | MCM domain-containing protein; Belongs to the MCM family. | PHD-type domain-containing protein. | 0.991 |
R1BT16_EMIHU | R1G1I8_EMIHU | R1BT16 | R1G1I8 | MCM domain-containing protein; Belongs to the MCM family. | DNA helicase; Belongs to the MCM family. | 0.999 |
R1C1R9_EMIHU | MCM7 | R1C1R9 | A0A0D3J9T2 | MCM domain-containing protein; Belongs to the MCM family. | DNA 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 [...] | 0.998 |