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Results for C6orf132

Gene Name Gene ID Reads Annotation
C6orf132 ENSGALG00000028570 1 chromosome 6 open reading frame 132 [Source:HGNC Symbol;Acc:HGNC:21288]











Genes with expression patterns similar to C6orf132

Nr. Gene Name Gene ID Reads Σ scores E3 embryo E3 aorta E3 anterior slice 1 E3 anterior slice 2 E3 anterior slice 3 E3 posterior slice 1 E3 posterior slice 2 E3 posterior slice 3 E4 anterior slice 1 E4 posterior slice 1 Annotation
1. LRP3 ENSGALG00000004853 13 1 - - - - 1.000 - - - - - LDL receptor related protein 3 [Source:HGNC Symbol;Acc:HGNC:6695]
2. SLC30A8 ENSGALG00000034377 3 1 - - - - 1.000 - - - - - solute carrier family 30 member 8 [Source:HGNC Symbol;Acc:HGNC:20303]
3. FAM83C ENSGALG00000031906 1 1 - - - - 1.000 - - - - - family with sequence similarity 83 member C [Source:HGNC Symbol;Acc:HGNC:16121]
4. SOD3 ENSGALG00000018557 16 1 - - - - 1.000 - - - - - superoxide dismutase 3 [Source:HGNC Symbol;Acc:HGNC:11181]
5. SLC25A40 ENSGALG00000019662 1 1 - - - - 1.000 - - - - - solute carrier family 25 member 40 [Source:HGNC Symbol;Acc:HGNC:29680]
6. HELIOS HELIOS 2 1 - - - - 1.000 - - - - -
7. NCK2 ENSGALG00000016799 152 1 - - - - 1.000 - - - - - NCK adaptor protein 2 [Source:NCBI gene;Acc:418727]
8. ENSGALG00000027201 ENSGALG00000027201 12 1 - - - - 1.000 - - - - -
9. KCNS2 ENSGALG00000043764 9 1 - - - - 1.000 - - - - - potassium voltage-gated channel modifier subfamily S member 2 [Source:HGNC Symbol;Acc:HGNC:6301]
10. SGSM1 ENSGALG00000005379 10 1 - - - - 1.000 - - - - - small G protein signaling modulator 1 [Source:HGNC Symbol;Acc:HGNC:29410]
11. NUDT2 ENSGALG00000027295 15 1 - - - - 1.000 - - - - - nudix hydrolase 2 [Source:HGNC Symbol;Acc:HGNC:8049]
12. RQCD1 RQCD1 110 1 - - - - 1.000 - - - - -
13. C6orf132 ENSGALG00000028570 1 1 - - - - 1.000 - - - - - chromosome 6 open reading frame 132 [Source:HGNC Symbol;Acc:HGNC:21288]
14. SMTN 18 1 - - - - 1.000 - - - - - smoothelin, transcript variant X2
15. ENSGALG00000002367 ENSGALG00000002367 10 1 - - - - 1.000 - - - - -
16. TMEM63C ENSGALG00000010406 1 1 - - - - 1.000 - - - - - transmembrane protein 63C [Source:HGNC Symbol;Acc:HGNC:23787]
17. ENSGALG00000000307 ENSGALG00000000307 29 1 - - - - 1.000 - - - - -
18. ENSGALG00000023084 ENSGALG00000023084 10 1 - - - - 1.000 - - - - -
19. LNX1 ENSGALG00000013940 2 1 - - - - 1.000 - - - - - ligand of numb-protein X 1 [Source:HGNC Symbol;Acc:HGNC:6657]
20. MMP11 ENSGALG00000005968 3 1 - - - - 1.000 - - - - - matrix metallopeptidase 11 [Source:HGNC Symbol;Acc:HGNC:7157]
21. LINS LINS 18 1 - - - - 1.000 - - - - -
22. NETO1 ENSGALG00000041184 3 1 - - - - 1.000 - - - - - neuropilin and tolloid like 1 [Source:HGNC Symbol;Acc:HGNC:13823]
23. SLC6A9 ENSGALG00000010098 5 1 - - - - 1.000 - - - - - solute carrier family 6 member 9 [Source:NCBI gene;Acc:424576]
24. CRBN ENSGALG00000008274 27 1 - - - - 1.000 - - - - - cereblon [Source:HGNC Symbol;Acc:HGNC:30185]
25. IL4 ENSGALG00000006827 2 1 - - - - 1.000 - - - - - interleukin 4 [Source:NCBI gene;Acc:416330]
26. AK5 ENSGALG00000031652 12 1 - - - - 1.000 - - - - - adenylate kinase 5 [Source:HGNC Symbol;Acc:HGNC:365]
27. ZBTB6 ENSGALG00000021570 15 1 - - - - 1.000 - - - - - zinc finger and BTB domain containing 6 [Source:NCBI gene;Acc:417108]
28. FETUB ENSGALG00000008608 38 0.848 - - - - 0.848 - - - - - fetuin B [Source:NCBI gene;Acc:395404]
29. ETV3 ENSGALG00000000669 7 0.8 - - - - 0.800 - - - - - ETS variant 3 [Source:HGNC Symbol;Acc:HGNC:3492]
30. LRRC39 ENSGALG00000005284 5 0.8 - - - - 0.800 - - - - - leucine rich repeat containing 39 [Source:HGNC Symbol;Acc:HGNC:28228]
31. TTLL9 ENSGALG00000006460 11 0.728 - - - - 0.728 - - - - - tubulin tyrosine ligase like 9 [Source:HGNC Symbol;Acc:HGNC:16118]
32. ZC2HC1C ENSGALG00000010309 6 0.715 - - - - 0.715 - - - - - zinc finger C2HC-type containing 1C, transcript variant X5
Yvernogeau L, Morin-Poulard I, Klaus A, Schulte-Merker S, Berezikov E, Junker JP, and Robin C. Multi-species tomo-sequencing identifies new major hematopoietic stem cell regulators in the microenvironment of the embryonic aorta. Submitted.
Robin Lab - 2019 © Hubrecht Institute | Berezikov Lab - 2019 © ERIBA