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Results for ADAMTS1

Gene Name Gene ID Reads Annotation
ADAMTS1 ENSG00000154734 785 ADAM metallopeptidase with thrombospondin type 1 motif 1 [Source:HGNC Symbol;Acc:HGNC:217]



Genes with expression patterns similar to ADAMTS1

Nr. Gene Name Gene ID Reads Σ scores 35d slice1 35d slice2 Annotation
1. ADAMTS1 ENSG00000154734 785 2 1.000 1.000 ADAM metallopeptidase with thrombospondin type 1 motif 1 [Source:HGNC Symbol;Acc:HGNC:217]
2. PTPN13 ENSG00000163629 2794 0.806 - 0.806 protein tyrosine phosphatase, non-receptor type 13 [Source:HGNC Symbol;Acc:HGNC:9646]
3. COLEC11 ENSG00000118004 1674 0.803 - 0.803 collectin subfamily member 11 [Source:HGNC Symbol;Acc:HGNC:17213]
4. CNTN1 ENSG00000018236 388 0.787 - 0.787 contactin 1 [Source:HGNC Symbol;Acc:HGNC:2171]
5. ADAMTS5 ENSG00000154736 2429 0.783 - 0.783 ADAM metallopeptidase with thrombospondin type 1 motif 5 [Source:HGNC Symbol;Acc:HGNC:221]
6. SLITRK6 ENSG00000184564 1967 0.783 - 0.783 SLIT and NTRK like family member 6 [Source:HGNC Symbol;Acc:HGNC:23503]
7. KLF5 ENSG00000102554 302 0.761 - 0.761 Kruppel like factor 5 [Source:HGNC Symbol;Acc:HGNC:6349]
8. FBN1 ENSG00000166147 3718 0.755 - 0.755 fibrillin 1 [Source:HGNC Symbol;Acc:HGNC:3603]
9. STOM ENSG00000148175 2832 0.755 - 0.755 stomatin [Source:HGNC Symbol;Acc:HGNC:3383]
10. SPTBN1 ENSG00000115306 10951 0.746 - 0.746 spectrin beta, non-erythrocytic 1 [Source:HGNC Symbol;Acc:HGNC:11275]
11. MFAP4 ENSG00000166482 1115 0.74 - 0.740 microfibril associated protein 4 [Source:HGNC Symbol;Acc:HGNC:7035]
12. ADAMTS8 ENSG00000134917 153 0.726 - 0.726 ADAM metallopeptidase with thrombospondin type 1 motif 8 [Source:HGNC Symbol;Acc:HGNC:224]
13. EPHA7 ENSG00000135333 3779 0.72 - 0.720 EPH receptor A7 [Source:HGNC Symbol;Acc:HGNC:3390]
14. CPS1 ENSG00000021826 1515 0.705 - 0.705 carbamoyl-phosphate synthase 1 [Source:HGNC Symbol;Acc:HGNC:2323]
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