node1 | node2 | node1 accession | node2 accession | node1 annotation | node2 annotation | score |
F13H10.3 | daf-15 | F13H10.3b.1 | C10C5.6c.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | Raptor_N domain-containing protein. | 0.590 |
F13H10.3 | let-363 | F13H10.3b.1 | B0261.2a.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | Target of rapamycin homolog; Serine/threonine-protein kinase that regulates the mRNA translation machinery, probably by modulating the activity of translation factors such as eIF-4G and eIF-2. It may have some protein kinase activity instead of lipid kinase activity. May play a role in P-granule degradation by autophagy in somatic cells during embryogenesis. Required, during larval development, for the establishment of the proper number of germline progenitors, probably upstream of rsks-1 and ife-1. Required for larval development. May act as a mediator of lifespan regulation by insuli [...] | 0.687 |
F13H10.3 | lmtr-2 | F13H10.3b.1 | Y97E10AR.7.2 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | Ragulator complex protein LAMTOR2 homolog; Regulator of the TOR pathway, a signaling cascade that promotes cell growth in response to growth factors, energy levels, and amino acids. May activate the TOR signaling cascade in response to amino acids; Belongs to the GAMAD family. | 0.997 |
F13H10.3 | lmtr-3 | F13H10.3b.1 | C06H2.6a.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | Late endosomal/lysosomal adaptor, Mapk (MAPK) and mToR (MTOR) activator homolog. | 0.996 |
F13H10.3 | mlst-8 | F13H10.3b.1 | C10H11.8a.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | WD_REPEATS_REGION domain-containing protein. | 0.553 |
F13H10.3 | raga-1 | F13H10.3b.1 | T24F1.1.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | RAs-related GTP-binding protein A. | 0.946 |
F13H10.3 | ragc-1 | F13H10.3b.1 | Y24F12A.2a.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | RAs-related GTP binding protein C homolog. | 0.938 |
F13H10.3 | rheb-1 | F13H10.3b.1 | F54C8.5.1 | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | GTP-binding protein Rheb homolog 1; Binds GTP and exhibits intrinsic GTPase activity. | 0.675 |
H05C05.1 | daf-15 | H05C05.1c.1 | C10C5.6c.1 | Uncharacterized protein. | Raptor_N domain-containing protein. | 0.424 |
H05C05.1 | efk-1 | H05C05.1c.1 | F42A10.4a.1 | Uncharacterized protein. | Eukaryotic elongation factor 2 kinase; Phosphorylates 2 adjacent threonine residues, 'Thr-57' and 'Thr-59', in the N-terminus of eukaryotic elongation factor-2. | 0.422 |
H05C05.1 | ife-2 | H05C05.1c.1 | R04A9.4.1 | Uncharacterized protein. | Eukaryotic translation initiation factor 4E-2; Recognizes and binds the 7-methylguanosine-containing mRNA cap during an early step in the initiation of protein synthesis and facilitates ribosome binding by inducing the unwinding of the mRNAs secondary structures. All 5 eIF4E proteins bind monomethyl cap structures. Only ife-1, ife-2 and ife-5 bind trimethyl cap structures which result from trans-splicing. Translation of trimethyl cap structure mRNAs may be regulated by intracellular redox state; disulfide bonds change the width and depth of the cap-binding cavity determining selectivit [...] | 0.654 |
H05C05.1 | ife-3 | H05C05.1c.1 | B0348.6b.1 | Uncharacterized protein. | Eukaryotic translation initiation factor 4E-3; Recognizes and binds the 7-methylguanosine-containing mRNA cap during an early step in the initiation of protein synthesis and facilitates ribosome binding by inducing the unwinding of the mRNAs secondary structures. All 5 eIF4E proteins bind monomethyl cap structures. Only ife-1, ife-2 and ife-5 bind trimethyl cap structures which result from trans-splicing. Translation of trimethyl cap structure mRNAs may be regulated by intracellular redox state; disulfide bonds change the width and depth of the cap-binding cavity determining selectivit [...] | 0.782 |
H05C05.1 | let-363 | H05C05.1c.1 | B0261.2a.1 | Uncharacterized protein. | Target of rapamycin homolog; Serine/threonine-protein kinase that regulates the mRNA translation machinery, probably by modulating the activity of translation factors such as eIF-4G and eIF-2. It may have some protein kinase activity instead of lipid kinase activity. May play a role in P-granule degradation by autophagy in somatic cells during embryogenesis. Required, during larval development, for the establishment of the proper number of germline progenitors, probably upstream of rsks-1 and ife-1. Required for larval development. May act as a mediator of lifespan regulation by insuli [...] | 0.403 |
H05C05.1 | rheb-1 | H05C05.1c.1 | F54C8.5.1 | Uncharacterized protein. | GTP-binding protein Rheb homolog 1; Binds GTP and exhibits intrinsic GTPase activity. | 0.512 |
H05C05.1 | rps-6 | H05C05.1c.1 | Y71A12B.1a.1 | Uncharacterized protein. | 40S ribosomal protein S6; May play an important role in controlling cell growth and proliferation through the selective translation of particular classes of mRNA (By similarity). Negatively regulates lifespan ; Belongs to the eukaryotic ribosomal protein eS6 family. | 0.812 |
daf-15 | F13H10.3 | C10C5.6c.1 | F13H10.3b.1 | Raptor_N domain-containing protein. | Sodium-coupled neutral amino acid transporter 9 homolog; Lysosomal amino acid transporter involved in the activation of mTORC1 in response to amino acid levels. Probably acts as an amino acid sensor of the Rag GTPases and Ragulator complexes, 2 complexes involved in amino acid sensing and activation of mTORC1, a signaling complex promoting cell growth in response to growth factors, energy levels, and amino acids. | 0.590 |
daf-15 | H05C05.1 | C10C5.6c.1 | H05C05.1c.1 | Raptor_N domain-containing protein. | Uncharacterized protein. | 0.424 |
daf-15 | ife-2 | C10C5.6c.1 | R04A9.4.1 | Raptor_N domain-containing protein. | Eukaryotic translation initiation factor 4E-2; Recognizes and binds the 7-methylguanosine-containing mRNA cap during an early step in the initiation of protein synthesis and facilitates ribosome binding by inducing the unwinding of the mRNAs secondary structures. All 5 eIF4E proteins bind monomethyl cap structures. Only ife-1, ife-2 and ife-5 bind trimethyl cap structures which result from trans-splicing. Translation of trimethyl cap structure mRNAs may be regulated by intracellular redox state; disulfide bonds change the width and depth of the cap-binding cavity determining selectivit [...] | 0.648 |
daf-15 | ife-3 | C10C5.6c.1 | B0348.6b.1 | Raptor_N domain-containing protein. | Eukaryotic translation initiation factor 4E-3; Recognizes and binds the 7-methylguanosine-containing mRNA cap during an early step in the initiation of protein synthesis and facilitates ribosome binding by inducing the unwinding of the mRNAs secondary structures. All 5 eIF4E proteins bind monomethyl cap structures. Only ife-1, ife-2 and ife-5 bind trimethyl cap structures which result from trans-splicing. Translation of trimethyl cap structure mRNAs may be regulated by intracellular redox state; disulfide bonds change the width and depth of the cap-binding cavity determining selectivit [...] | 0.531 |
daf-15 | let-363 | C10C5.6c.1 | B0261.2a.1 | Raptor_N domain-containing protein. | Target of rapamycin homolog; Serine/threonine-protein kinase that regulates the mRNA translation machinery, probably by modulating the activity of translation factors such as eIF-4G and eIF-2. It may have some protein kinase activity instead of lipid kinase activity. May play a role in P-granule degradation by autophagy in somatic cells during embryogenesis. Required, during larval development, for the establishment of the proper number of germline progenitors, probably upstream of rsks-1 and ife-1. Required for larval development. May act as a mediator of lifespan regulation by insuli [...] | 0.999 |