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Results for Myh10

Gene Name Gene ID Reads Annotation
Myh10 ENSMUSG00000020900 13642 myosin, heavy polypeptide 10, non-muscle [Source:MGI Symbol;Acc:MGI:1930780]







Genes with expression patterns similar to Myh10

Nr. Gene Name Gene ID Reads Σ scores E10 5 slice 1 E10 5 slice 2 E10 5 slice 3 E11 5 slice 1 E11 5 slice 2 E11 5 slice 3 Annotation
1. Myh10 ENSMUSG00000020900 13642 6 1.000 1.000 1.000 1.000 1.000 1.000 myosin, heavy polypeptide 10, non-muscle [Source:MGI Symbol;Acc:MGI:1930780]
2. Kpnb1 ENSMUSG00000001440 31962 0.819 - 0.819 - - - - karyopherin (importin) beta 1 [Source:MGI Symbol;Acc:MGI:107532]
3. Dynlrb1 ENSMUSG00000047459 16406 0.816 - 0.816 - - - - dynein light chain roadblock-type 1 [Source:MGI Symbol;Acc:MGI:1914318]
4. Exoc5 ENSMUSG00000061244 6049 0.805 - 0.805 - - - - exocyst complex component 5 [Source:MGI Symbol;Acc:MGI:2145645]
5. Erdr1 17201 0.799 - 0.799 - - - - erythroid differentiation regulator 1, transcript variant 1, non-coding
6. Ngfrap1 42491 0.791 0.791 - - - - - nerve growth factor receptor (TNFRSF16) associated protein 1, transcript variant 1
7. Ifitm2 ENSMUSG00000060591 5091 0.789 - 0.789 - - - - interferon induced transmembrane protein 2 [Source:MGI Symbol;Acc:MGI:1933382]
8. Cnbp ENSMUSG00000030057 10385 0.785 - 0.785 - - - - cellular nucleic acid binding protein [Source:MGI Symbol;Acc:MGI:88431]
9. Nktr ENSMUSG00000032525 7611 0.754 0.754 - - - - - natural killer tumor recognition sequence [Source:MGI Symbol;Acc:MGI:97346]
10. Sep-02 Sep-02 14133 0.754 0.754 - - - - -
11. Prdx2 ENSMUSG00000005161 13464 0.754 - 0.754 - - - - peroxiredoxin 2 [Source:MGI Symbol;Acc:MGI:109486]
12. Gm4617 ENSMUSG00000096544 16285 0.75 - 0.750 - - - - predicted pseudogene 4617 [Source:MGI Symbol;Acc:MGI:3704225]
13. Atp5h ENSMUSG00000034566 13302 0.746 - 0.746 - - - - ATP synthase, H+ transporting, mitochondrial F0 complex, subunit D [Source:MGI Symbol;Acc:MGI:1918929]
14. Itm2c ENSMUSG00000026223 5889 0.744 - - 0.744 - - - integral membrane protein 2C [Source:MGI Symbol;Acc:MGI:1927594]
15. Fundc2 ENSMUSG00000031198 5130 0.74 - 0.740 - - - - FUN14 domain containing 2 [Source:MGI Symbol;Acc:MGI:1914641]
16. Aes ENSMUSG00000054452 6067 0.739 - 0.739 - - - - amino-terminal enhancer of split [Source:MGI Symbol;Acc:MGI:95806]
17. Ube2r2 ENSMUSG00000036241 9669 0.738 - 0.738 - - - - ubiquitin-conjugating enzyme E2R 2 [Source:MGI Symbol;Acc:MGI:1914865]
18. Unc5c ENSMUSG00000059921 6834 0.731 0.731 - - - - - unc-5 netrin receptor C [Source:MGI Symbol;Acc:MGI:1095412]
19. Eif4b ENSMUSG00000058655 20711 0.731 0.731 - - - - - eukaryotic translation initiation factor 4B [Source:MGI Symbol;Acc:MGI:95304]
20. Rpl22 ENSMUSG00000028936 19132 0.73 - 0.730 - - - - ribosomal protein L22 [Source:MGI Symbol;Acc:MGI:99262]
21. Ajuba ENSMUSG00000022178 4670 0.726 - 0.726 - - - - ajuba LIM protein [Source:MGI Symbol;Acc:MGI:1341886]
22. Sox4 ENSMUSG00000076431 8757 0.726 0.726 - - - - - SRY (sex determining region Y)-box 4 [Source:MGI Symbol;Acc:MGI:98366]
23. Tln1 ENSMUSG00000028465 7827 0.722 0.722 - - - - - talin 1 [Source:MGI Symbol;Acc:MGI:1099832]
24. Polr2a ENSMUSG00000005198 7744 0.712 - 0.712 - - - - polymerase (RNA) II (DNA directed) polypeptide A [Source:MGI Symbol;Acc:MGI:98086]
25. Baz2b ENSMUSG00000026987 6144 0.711 0.711 - - - - - bromodomain adjacent to zinc finger domain, 2B [Source:MGI Symbol;Acc:MGI:2442782]
26. Derl2 ENSMUSG00000018442 2288 0.709 - - 0.709 - - - Der1-like domain family, member 2 [Source:MGI Symbol;Acc:MGI:2151483]
27. Wnk1 ENSMUSG00000045962 5216 0.708 0.708 - - - - - WNK lysine deficient protein kinase 1 [Source:MGI Symbol;Acc:MGI:2442092]
28. Rpl13a ENSMUSG00000074129 29575 0.703 - 0.703 - - - - ribosomal protein L13A [Source:MGI Symbol;Acc:MGI:1351455]
29. Mcm7 ENSMUSG00000029730 14319 0.7 - 0.700 - - - - minichromosome maintenance complex component 7 [Source:MGI Symbol;Acc:MGI:1298398]
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