node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
CACNA1G | CACNA1H | ENSFALP00000001445 | ENSFALP00000014293 | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | Calcium voltage-gated channel subunit alpha1 H. | 0.456 |
CACNA1G | CACNA1I | ENSFALP00000001445 | ENSFALP00000012838 | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | 0.924 |
CACNA1H | CACNA1G | ENSFALP00000014293 | ENSFALP00000001445 | Calcium voltage-gated channel subunit alpha1 H. | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | 0.456 |
CACNA1H | CACNA1I | ENSFALP00000014293 | ENSFALP00000012838 | Calcium voltage-gated channel subunit alpha1 H. | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | 0.592 |
CACNA1I | CACNA1G | ENSFALP00000012838 | ENSFALP00000001445 | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | 0.924 |
CACNA1I | CACNA1H | ENSFALP00000012838 | ENSFALP00000014293 | Voltage-dependent T-type calcium channel subunit alpha; Voltage-sensitive calcium channels (VSCC) mediate the entry of calcium ions into excitable cells and are also involved in a variety of calcium-dependent processes, including muscle contraction, hormone or neurotransmitter release, gene expression, cell motility, cell division and cell death. This channel gives rise to T-type calcium currents. T-type calcium channels belong to the "low-voltage activated (LVA)" group and are strongly blocked by nickel and mibefradil. A particularity of this type of channels is an opening at quite ne [...] | Calcium voltage-gated channel subunit alpha1 H. | 0.592 |
LOC101810276 | SCN1A | ENSFALP00000002176 | ENSFALP00000008763 | Uncharacterized protein. | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | 0.493 |
LOC101810276 | SCN2A | ENSFALP00000002176 | ENSFALP00000008735 | Uncharacterized protein. | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | 0.427 |
LOC101819537 | SCN4A | ENSFALP00000007086 | ENSFALP00000014299 | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | 0.483 |
P2RX1 | P2RX3 | ENSFALP00000010234 | ENSFALP00000011829 | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | 0.970 |
P2RX1 | P2RX4 | ENSFALP00000010234 | ENSFALP00000009589 | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | 0.948 |
P2RX3 | P2RX1 | ENSFALP00000011829 | ENSFALP00000010234 | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | 0.970 |
P2RX3 | P2RX4 | ENSFALP00000011829 | ENSFALP00000009589 | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | 0.954 |
P2RX4 | P2RX1 | ENSFALP00000009589 | ENSFALP00000010234 | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | 0.948 |
P2RX4 | P2RX3 | ENSFALP00000009589 | ENSFALP00000011829 | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | P2X purinoceptor; Receptor for ATP that acts as a ligand-gated ion channel. | 0.954 |
SCN1A | LOC101810276 | ENSFALP00000008763 | ENSFALP00000002176 | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | Uncharacterized protein. | 0.493 |
SCN1A | SCN4A | ENSFALP00000008763 | ENSFALP00000014299 | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | 0.484 |
SCN1A | U3K121_FICAL | ENSFALP00000008763 | ENSFALP00000008725 | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | Uncharacterized protein. | 0.483 |
SCN2A | LOC101810276 | ENSFALP00000008735 | ENSFALP00000002176 | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | Uncharacterized protein. | 0.427 |
SCN2A | SCN4A | ENSFALP00000008735 | ENSFALP00000014299 | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | Sodium channel protein; Mediates the voltage-dependent sodium ion permeability of excitable membranes. Assuming opened or closed conformations in response to the voltage difference across the membrane, the protein forms a sodium-selective channel through which Na(+) ions may pass in accordance with their electrochemical gradient. | 0.482 |