node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
EEFSEC | SELENOF | ENSSSCP00000043782 | ENSSSCP00000023410 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Selenoprotein F; May be involved in redox reactions associated with the formation of disulfide bonds (By similarity). May contribute to the quality control of protein folding in the endoplasmic reticulum. May regulate protein folding by enhancing the catalytic activity of UGGT1/UGCGL1 and UGGT2/UGCGL2 (By similarity). | 0.776 |
EEFSEC | SELENOH | ENSSSCP00000043782 | ENSSSCP00000042612 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Uncharacterized protein. | 0.490 |
EEFSEC | SELENOI | ENSSSCP00000043782 | ENSSSCP00000019248 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Selenoprotein I; Belongs to the CDP-alcohol phosphatidyltransferase class-I family. | 0.653 |
EEFSEC | SELENOK | ENSSSCP00000043782 | ENSSSCP00000046534 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Selenoprotein K; Required for Ca(2+) flux in immune cells and plays a role in T-cell proliferation and in T-cell and neutrophil migration (By similarity). Involved in endoplasmic reticulum-associated degradation (ERAD) of soluble glycosylated proteins (By similarity). Required for palmitoylation and cell surface expression of CD36 and involved in macrophage uptake of low-density lipoprotein and in foam cell formation (By similarity). Together with ZDHHC6, required for palmitoylation of ITPR1 in immune cells, leading to regulate ITPR1 stability and function. Plays a role in protection o [...] | 0.492 |
EEFSEC | SELENOM | ENSSSCP00000043782 | ENSSSCP00000022697 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Sep15_SelM domain-containing protein. | 0.516 |
EEFSEC | SELENON | ENSSSCP00000043782 | ENSSSCP00000073558 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Selenoprotein N. | 0.788 |
EEFSEC | SELENOO | ENSSSCP00000043782 | ENSSSCP00000060041 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Uncharacterized protein. | 0.854 |
EEFSEC | SELENOS | ENSSSCP00000043782 | ENSSSCP00000005198 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Selenoprotein S; Involved in the degradation process of misfolded endoplasmic reticulum (ER) luminal proteins. Participates in the transfer of misfolded proteins from the ER to the cytosol, where they are destroyed by the proteasome in a ubiquitin-dependent manner. Probably acts by serving as a linker between DERL1, which mediates the retrotranslocation of misfolded proteins into the cytosol, and the ATPase complex VCP, which mediates the translocation and ubiquitination (By similarity). | 0.571 |
EEFSEC | SELENOT | ENSSSCP00000043782 | ENSSSCP00000054911 | Eukaryotic elongation factor, selenocysteine-tRNA specific. | Selenoprotein T; Belongs to the SelWTH family. Selenoprotein T subfamily. | 0.684 |
MSRB1 | SELENOF | ENSSSCP00000038906 | ENSSSCP00000023410 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Selenoprotein F; May be involved in redox reactions associated with the formation of disulfide bonds (By similarity). May contribute to the quality control of protein folding in the endoplasmic reticulum. May regulate protein folding by enhancing the catalytic activity of UGGT1/UGCGL1 and UGGT2/UGCGL2 (By similarity). | 0.812 |
MSRB1 | SELENOH | ENSSSCP00000038906 | ENSSSCP00000042612 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Uncharacterized protein. | 0.778 |
MSRB1 | SELENOI | ENSSSCP00000038906 | ENSSSCP00000019248 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Selenoprotein I; Belongs to the CDP-alcohol phosphatidyltransferase class-I family. | 0.716 |
MSRB1 | SELENOK | ENSSSCP00000038906 | ENSSSCP00000046534 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Selenoprotein K; Required for Ca(2+) flux in immune cells and plays a role in T-cell proliferation and in T-cell and neutrophil migration (By similarity). Involved in endoplasmic reticulum-associated degradation (ERAD) of soluble glycosylated proteins (By similarity). Required for palmitoylation and cell surface expression of CD36 and involved in macrophage uptake of low-density lipoprotein and in foam cell formation (By similarity). Together with ZDHHC6, required for palmitoylation of ITPR1 in immune cells, leading to regulate ITPR1 stability and function. Plays a role in protection o [...] | 0.868 |
MSRB1 | SELENOM | ENSSSCP00000038906 | ENSSSCP00000022697 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Sep15_SelM domain-containing protein. | 0.766 |
MSRB1 | SELENON | ENSSSCP00000038906 | ENSSSCP00000073558 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Selenoprotein N. | 0.645 |
MSRB1 | SELENOO | ENSSSCP00000038906 | ENSSSCP00000060041 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Uncharacterized protein. | 0.851 |
MSRB1 | SELENOS | ENSSSCP00000038906 | ENSSSCP00000005198 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Selenoprotein S; Involved in the degradation process of misfolded endoplasmic reticulum (ER) luminal proteins. Participates in the transfer of misfolded proteins from the ER to the cytosol, where they are destroyed by the proteasome in a ubiquitin-dependent manner. Probably acts by serving as a linker between DERL1, which mediates the retrotranslocation of misfolded proteins into the cytosol, and the ATPase complex VCP, which mediates the translocation and ubiquitination (By similarity). | 0.813 |
MSRB1 | SELENOT | ENSSSCP00000038906 | ENSSSCP00000054911 | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | Selenoprotein T; Belongs to the SelWTH family. Selenoprotein T subfamily. | 0.877 |
SELENOF | EEFSEC | ENSSSCP00000023410 | ENSSSCP00000043782 | Selenoprotein F; May be involved in redox reactions associated with the formation of disulfide bonds (By similarity). May contribute to the quality control of protein folding in the endoplasmic reticulum. May regulate protein folding by enhancing the catalytic activity of UGGT1/UGCGL1 and UGGT2/UGCGL2 (By similarity). | Eukaryotic elongation factor, selenocysteine-tRNA specific. | 0.776 |
SELENOF | MSRB1 | ENSSSCP00000023410 | ENSSSCP00000038906 | Selenoprotein F; May be involved in redox reactions associated with the formation of disulfide bonds (By similarity). May contribute to the quality control of protein folding in the endoplasmic reticulum. May regulate protein folding by enhancing the catalytic activity of UGGT1/UGCGL1 and UGGT2/UGCGL2 (By similarity). | Methionine-R-sulfoxide reductase B1; Methionine-sulfoxide reductase that specifically reduces methionine (R)-sulfoxide back to methionine. While in many cases, methionine oxidation is the result of random oxidation following oxidative stress, methionine oxidation is also a post-translational modification that takes place on specific residue. Acts as a regulator of actin assembly by reducing methionine (R)-sulfoxide mediated by MICALs (MICAL1, MICAL2 or MICAL3) on actin, thereby promoting filament repolymerization. Plays a role in innate immunity by reducing oxidized actin, leading to a [...] | 0.812 |