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Gene Expression Literature Summary
Symbol
Name
ID
Sema6b
sema domain, transmembrane domain (TM), and cytoplasmic domain, (semaphorin) 6B
MGI:1202889

15 matching records from 15 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E9 E9.5 E10.5 E11.5 E12.5 E13.5 E14 E14.5 E15 E15.5 E16.5 E17 E17.5 E18 E18.5 P
Immunohistochemistry (section) 1
In situ RNA (section) 1 2 3 1 2 1 2 1 2 3
Northern blot 1 1 1
Western blot 1
RT-PCR 1 2 3 2 1 1 1 1
cDNA clones 1

Summary by Gene and Reference: Number indicates the number of results matching the search criteria recorded for each reference.
* Indicates detailed expression data entries available
Sema6b  sema domain, transmembrane domain (TM), and cytoplasmic domain, (semaphorin) 6B   (Synonyms: Sema, Seman, semaZ, VIb)
Results  Reference
4J:103829 Chen B, Schaevitz LR, McConnell SK, Fezl regulates the differentiation and axon targeting of layer 5 subcortical projection neurons in cerebral cortex. Proc Natl Acad Sci U S A. 2005 Nov 22;102(47):17184-9
2J:111207 Dionne MS, Brunet LJ, Eimon PM, Harland RM, Noggin is required for correct guidance of dorsal root ganglion axons. Dev Biol. 2002 Nov 15;251(2):283-93
6*J:46042 Eckhardt F, Behar O, Calautti E, Yonezawa K, Nishimoto I, Fishman MC, A novel transmembrane semaphorin can bind c-src. Mol Cell Neurosci. 1997;9(5-6):409-19
1J:163378 Haklai-Topper L, Mlechkovich G, Savariego D, Gokhman I, Yaron A, Cis interaction between Semaphorin6A and Plexin-A4 modulates the repulsive response to Sema6A. EMBO J. 2010 Aug 4;29(15):2635-45
1J:188362 Kuwajima T, Yoshida Y, Takegahara N, Petros TJ, Kumanogoh A, Jessell TM, Sakurai T, Mason C, Optic chiasm presentation of Semaphorin6D in the context of Plexin-A1 and Nr-CAM promotes retinal axon midline crossing. Neuron. 2012 May 24;74(4):676-90
5J:91290 Lillesaar C, Fried K, Neurites from trigeminal ganglion explants grown in vitro are repelled or attracted by tooth-related tissues depending on developmental stage. Neuroscience. 2004;125(1):149-61
3J:254695 Peng Y, Song L, Li D, Kesterson R, Wang J, Wang L, Rokosh G, Wu B, Wang Q, Jiao K, Sema6D acts downstream of bone morphogenetic protein signalling to promote atrioventricular cushion development in mice. Cardiovasc Res. 2016 Nov 1;112(2):532-542
1J:274700 Poltavski DM, Colombier P, Hu J, Duron A, Black BL, Makita T, Venous endothelin modulates responsiveness of cardiac sympathetic axons to arterial semaphorin. Elife. 2019 Feb 8;8:e42528
1*J:277791 Sar Shalom H, Goldner R, Golan-Vaishenker Y, Yaron A, Balance between BDNF and Semaphorins gates the innervation of the mammary gland. Elife. 2019 Jan 10;8:e41162
1J:98330 Suto F, Ito K, Uemura M, Shimizu M, Shinkawa Y, Sanbo M, Shinoda T, Tsuboi M, Takashima S, Yagi T, Fujisawa H, Plexin-a4 mediates axon-repulsive activities of both secreted and transmembrane semaphorins and plays roles in nerve fiber guidance. J Neurosci. 2005 Apr 6;25(14):3628-37
2J:160509 Tawarayama H, Yoshida Y, Suto F, Mitchell KJ, Fujisawa H, Roles of semaphorin-6B and plexin-A2 in lamina-restricted projection of hippocampal mossy fibers. J Neurosci. 2010 May 19;30(20):7049-60
5*J:215487 Thompson CL, Ng L, Menon V, Martinez S, Lee CK, Glattfelder K, Sunkin SM, Henry A, Lau C, Dang C, Garcia-Lopez R, Martinez-Ferre A, Pombero A, Rubenstein JL, Wakeman WB, Hohmann J, Dee N, Sodt AJ, Young R, Smith K, Nguyen TN, Kidney J, Kuan L, Jeromin A,Kaykas A, Miller J, Page D, Orta G, Bernard A, Riley Z, Smith S, Wohnoutka P, Hawrylycz MJ, Puelles L, Jones AR, A high-resolution spatiotemporal atlas of gene expression of the developing mouse brain. Neuron. 2014 Jul 16;83(2):309-23
1J:334513 Yan K, Bormuth I, Bormuth O, Tutukova S, Renner A, Bessa P, Schaub T, Rosario M, Tarabykin V, TrkB-dependent EphrinA reverse signaling regulates callosal axon fasciculate growth downstream of Neurod2/6. Cereb Cortex. 2023 Feb 20;33(5):1752-1767
2J:298597 Yan S, Thienthanasit R, Chen D, Engelen E, Bruhl J, Crossman DK, Kesterson R, Wang Q, Bouazoune K, Jiao K, CHD7 regulates cardiovascular development through ATP-dependent and -independent activities. Proc Natl Acad Sci U S A. 2020 Nov 17;117(46):28847-28858
1J:144660 Yoshida Y, Han B, Mendelsohn M, Jessell TM, PlexinA1 signaling directs the segregation of proprioceptive sensory axons in the developing spinal cord. Neuron. 2006 Dec 7;52(5):775-88

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last database update
04/16/2024
MGI 6.23
The Jackson Laboratory