Symbol Name ID |
Iqgap2
IQ motif containing GTPase activating protein 2 MGI:2449975 |
Age | E0.5 | E1 | E2 | E2.5 | E3 | E3.5 | E4 | E7 | E9 | E10 | E10.5 | E11 | E12 | E13 | E13.5 | E14 | E14.5 | E15 | E16 | E17 | P |
In situ RNA (section) | 1 | 1 | 1 | 1 | 1 | 1 | 3 | 1 | 1 | ||||||||||||
In situ RNA (whole mount) | 1 | 1 | |||||||||||||||||||
In situ reporter (knock in) | 1 | ||||||||||||||||||||
Northern blot | 1 | 1 | 1 | 1 | 1 | ||||||||||||||||
RT-PCR | 1 | 2 | 1 | 2 | 1 | 1 | 1 | 3 |
Iqgap2 IQ motif containing GTPase activating protein 2 (Synonyms: 4933417J23Rik) | |
Results | Reference |
1* | J:313619 Bedogni F, Hevner RF, Cell-Type-Specific Gene Expression in Developing Mouse Neocortex: Intermediate Progenitors Implicated in Axon Development. Front Mol Neurosci. 2021;14:686034 |
1* | J:177885 Brunskill EW, Georgas K, Rumballe B, Little MH, Potter SS, Defining the molecular character of the developing and adult kidney podocyte. PLoS One. 2011;6(9):e24640 |
13* | J:93072 Cupit LD, Schmidt VA, Miller F, Bahou WF, Distinct PAR/IQGAP expression patterns during murine development: implications for thrombin-associated cytoskeletal reorganization. Mamm Genome. 2004 Aug;15(8):618-29 |
1* | J:153498 Diez-Roux G, Banfi S, Sultan M, Geffers L, Anand S, Rozado D, Magen A, Canidio E, Pagani M, Peluso I, Lin-Marq N, Koch M, Bilio M, Cantiello I, Verde R, De Masi C, Bianchi SA, Cicchini J, Perroud E, Mehmeti S, Dagand E, Schrinner S, Nurnberger A, SchmidtK, Metz K, Zwingmann C, Brieske N, Springer C, Hernandez AM, Herzog S, Grabbe F, Sieverding C, Fischer B, Schrader K, Brockmeyer M, Dettmer S, Helbig C, Alunni V, Battaini MA, Mura C, Henrichsen CN, Garcia-Lopez R, Echevarria D, Puelles E, et al., A high-resolution anatomical atlas of the transcriptome in the mouse embryo. PLoS Biol. 2011;9(1):e1000582 |
2* | J:171409 GUDMAP Consortium, GUDMAP: the GenitoUrinary Development Molecular Anatomy Project. www.gudmap.org. 2004; |
1* | J:228563 Koscielny G, Yaikhom G, Iyer V, Meehan TF, Morgan H, Atienza-Herrero J, Blake A, Chen CK, Easty R, Di Fenza A, Fiegel T, Grifiths M, Horne A, Karp NA, Kurbatova N, Mason JC, Matthews P, Oakley DJ, Qazi A, Regnart J, Retha A, Santos LA, Sneddon DJ, Warren J, Westerberg H, Wilson RJ, Melvin DG, Smedley D, Brown SD, Flicek P, Skarnes WC, Mallon AM, Parkinson H, The International Mouse Phenotyping Consortium Web Portal, a unified point of access for knockout mice and related phenotyping data. Nucleic Acids Res. 2014 Jan;42(Database issue):D802-9 |
1 | J:320190 Liu T, Wan RP, Tang LJ, Liu SJ, Li HJ, Zhao QH, Liao WP, Sun XF, Yi YH, Long YS, A MicroRNA Profile in Fmr1 Knockout Mice Reveals MicroRNA Expression Alterations with Possible Roles in Fragile X Syndrome. Mol Neurobiol. 2015;51(3):1053-63 |
5* | J:112870 Mager J, Schultz RM, Brunk BP, Bartolomei MS, Identification of candidate maternal-effect genes through comparison of multiple microarray data sets. Mamm Genome. 2006 Sep;17(9):941-9 |
6* | J:81328 Natale DR, Watson AJ, Rac-1 and IQGAP are potential regulators of E-cadherin-catenin interactions during murine preimplantation development. Mech Dev. 2002 Dec;119 Suppl 1:S21-6 |
Mouse Genome Database (MGD), Gene Expression Database (GXD), Mouse Models of Human Cancer database (MMHCdb) (formerly Mouse Tumor Biology (MTB)), Gene Ontology (GO) |
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last database update 12/17/2024 MGI 6.24 |
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