| node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
| BACE1 | BACE2 | ENSP00000318585 | ENSP00000332979 | Beta-secretase 1; Responsible for the proteolytic processing of the amyloid precursor protein (APP). Cleaves at the N-terminus of the A-beta peptide sequence, between residues 671 and 672 of APP, leads to the generation and extracellular release of beta-cleaved soluble APP, and a corresponding cell-associated C-terminal fragment which is later released by gamma-secretase. Cleaves CHL1 (By similarity). | Beta-secretase 2; Responsible for the proteolytic processing of the amyloid precursor protein (APP). Cleaves APP, between residues 690 and 691, leading to the generation and extracellular release of beta-cleaved soluble APP, and a corresponding cell-associated C-terminal fragment which is later released by gamma-secretase. It has also been shown that it can cleave APP between residues 671 and 672. Responsible also for the proteolytic processing of CLTRN in pancreatic beta cells. Belongs to the peptidase A1 family. | 0.909 |
| BACE2 | BACE1 | ENSP00000332979 | ENSP00000318585 | Beta-secretase 2; Responsible for the proteolytic processing of the amyloid precursor protein (APP). Cleaves APP, between residues 690 and 691, leading to the generation and extracellular release of beta-cleaved soluble APP, and a corresponding cell-associated C-terminal fragment which is later released by gamma-secretase. It has also been shown that it can cleave APP between residues 671 and 672. Responsible also for the proteolytic processing of CLTRN in pancreatic beta cells. Belongs to the peptidase A1 family. | Beta-secretase 1; Responsible for the proteolytic processing of the amyloid precursor protein (APP). Cleaves at the N-terminus of the A-beta peptide sequence, between residues 671 and 672 of APP, leads to the generation and extracellular release of beta-cleaved soluble APP, and a corresponding cell-associated C-terminal fragment which is later released by gamma-secretase. Cleaves CHL1 (By similarity). | 0.909 |
| CTSD | ENSP00000489910 | ENSP00000236671 | ENSP00000489910 | Cathepsin D heavy chain; Acid protease active in intracellular protein breakdown. Plays a role in APP processing following cleavage and activation by ADAM30 which leads to APP degradation. Involved in the pathogenesis of several diseases such as breast cancer and possibly Alzheimer disease. | Peptidase A1 domain-containing protein; Belongs to the peptidase A1 family. | 0.900 |
| CTSD | NAPSA | ENSP00000236671 | ENSP00000253719 | Cathepsin D heavy chain; Acid protease active in intracellular protein breakdown. Plays a role in APP processing following cleavage and activation by ADAM30 which leads to APP degradation. Involved in the pathogenesis of several diseases such as breast cancer and possibly Alzheimer disease. | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | 0.625 |
| CTSD | REN | ENSP00000236671 | ENSP00000272190 | Cathepsin D heavy chain; Acid protease active in intracellular protein breakdown. Plays a role in APP processing following cleavage and activation by ADAM30 which leads to APP degradation. Involved in the pathogenesis of several diseases such as breast cancer and possibly Alzheimer disease. | Renin; Renin is a highly specific endopeptidase, whose only known function is to generate angiotensin I from angiotensinogen in the plasma, initiating a cascade of reactions that produce an elevation of blood pressure and increased sodium retention by the kidney. | 0.430 |
| DDI1 | DDI2 | ENSP00000302805 | ENSP00000417748 | Protein DDI1 homolog 1; Probable aspartic protease (Probable). Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI2, for cellular survival following replication stress. Together or redudantly with DDI2, removes RTF2 from stalled forks to allow cell cycle progression after replication stress and maintains genome integrity. | Protein DDI1 homolog 2; Aspartic protease that mediates the cleavage of NFE2L1/NRF1 at 'Leu-104', thereby promoting release of NFE2L1/NRF1 from the endoplasmic reticulum membrane. Ubiquitination of NFE2L1/NRF1 is a prerequisite for cleavage, suggesting that DDI2 specifically recognizes and binds ubiquitinated NFE2L1/NRF1. Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI1, for cellular survival following replication stress. Together or redudantly with DDI1, removes RTF2 from stalled forks to allow cel [...] | 0.482 |
| DDI1 | NRIP3 | ENSP00000302805 | ENSP00000310205 | Protein DDI1 homolog 1; Probable aspartic protease (Probable). Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI2, for cellular survival following replication stress. Together or redudantly with DDI2, removes RTF2 from stalled forks to allow cell cycle progression after replication stress and maintains genome integrity. | Nuclear receptor interacting protein 3. | 0.807 |
| DDI2 | DDI1 | ENSP00000417748 | ENSP00000302805 | Protein DDI1 homolog 2; Aspartic protease that mediates the cleavage of NFE2L1/NRF1 at 'Leu-104', thereby promoting release of NFE2L1/NRF1 from the endoplasmic reticulum membrane. Ubiquitination of NFE2L1/NRF1 is a prerequisite for cleavage, suggesting that DDI2 specifically recognizes and binds ubiquitinated NFE2L1/NRF1. Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI1, for cellular survival following replication stress. Together or redudantly with DDI1, removes RTF2 from stalled forks to allow cel [...] | Protein DDI1 homolog 1; Probable aspartic protease (Probable). Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI2, for cellular survival following replication stress. Together or redudantly with DDI2, removes RTF2 from stalled forks to allow cell cycle progression after replication stress and maintains genome integrity. | 0.482 |
| DDI2 | NRIP3 | ENSP00000417748 | ENSP00000310205 | Protein DDI1 homolog 2; Aspartic protease that mediates the cleavage of NFE2L1/NRF1 at 'Leu-104', thereby promoting release of NFE2L1/NRF1 from the endoplasmic reticulum membrane. Ubiquitination of NFE2L1/NRF1 is a prerequisite for cleavage, suggesting that DDI2 specifically recognizes and binds ubiquitinated NFE2L1/NRF1. Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI1, for cellular survival following replication stress. Together or redudantly with DDI1, removes RTF2 from stalled forks to allow cel [...] | Nuclear receptor interacting protein 3. | 0.602 |
| ENSP00000489910 | CTSD | ENSP00000489910 | ENSP00000236671 | Peptidase A1 domain-containing protein; Belongs to the peptidase A1 family. | Cathepsin D heavy chain; Acid protease active in intracellular protein breakdown. Plays a role in APP processing following cleavage and activation by ADAM30 which leads to APP degradation. Involved in the pathogenesis of several diseases such as breast cancer and possibly Alzheimer disease. | 0.900 |
| NAPSA | CTSD | ENSP00000253719 | ENSP00000236671 | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | Cathepsin D heavy chain; Acid protease active in intracellular protein breakdown. Plays a role in APP processing following cleavage and activation by ADAM30 which leads to APP degradation. Involved in the pathogenesis of several diseases such as breast cancer and possibly Alzheimer disease. | 0.625 |
| NAPSA | PGA3 | ENSP00000253719 | ENSP00000322192 | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | Pepsin A-3; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | 0.436 |
| NAPSA | PGA4 | ENSP00000253719 | ENSP00000367391 | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | Pepsin A-4; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | 0.436 |
| NAPSA | PGA5 | ENSP00000253719 | ENSP00000309542 | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | Pepsin A-5; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | 0.430 |
| NRIP3 | DDI1 | ENSP00000310205 | ENSP00000302805 | Nuclear receptor interacting protein 3. | Protein DDI1 homolog 1; Probable aspartic protease (Probable). Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI2, for cellular survival following replication stress. Together or redudantly with DDI2, removes RTF2 from stalled forks to allow cell cycle progression after replication stress and maintains genome integrity. | 0.807 |
| NRIP3 | DDI2 | ENSP00000310205 | ENSP00000417748 | Nuclear receptor interacting protein 3. | Protein DDI1 homolog 2; Aspartic protease that mediates the cleavage of NFE2L1/NRF1 at 'Leu-104', thereby promoting release of NFE2L1/NRF1 from the endoplasmic reticulum membrane. Ubiquitination of NFE2L1/NRF1 is a prerequisite for cleavage, suggesting that DDI2 specifically recognizes and binds ubiquitinated NFE2L1/NRF1. Seems to act as a proteasomal shuttle which links the proteasome and replication fork proteins like RTF2 (Probable). Required, with DDI1, for cellular survival following replication stress. Together or redudantly with DDI1, removes RTF2 from stalled forks to allow cel [...] | 0.602 |
| PGA3 | NAPSA | ENSP00000322192 | ENSP00000253719 | Pepsin A-3; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | 0.436 |
| PGA3 | PGA4 | ENSP00000322192 | ENSP00000367391 | Pepsin A-3; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | Pepsin A-4; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | 0.980 |
| PGA3 | PGA5 | ENSP00000322192 | ENSP00000309542 | Pepsin A-3; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | Pepsin A-5; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | 0.904 |
| PGA4 | NAPSA | ENSP00000367391 | ENSP00000253719 | Pepsin A-4; Shows particularly broad specificity; although bonds involving phenylalanine and leucine are preferred, many others are also cleaved to some extent. | Napsin-A; May be involved in processing of pneumocyte surfactant precursors. | 0.436 |