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Gene Expression Literature Summary
Symbol
Name
ID
Plagl1
pleiomorphic adenoma gene-like 1
MGI:1100874

53 matching records from 53 references.

Summary by Age and Assay: Numbers in the table indicate the number of results matching the search criteria.
Age E8 E8.5 E9 E9.5 E10 E10.5 E11 E11.5 E12 E12.5 E13 E13.5 E14 E14.5 E15 E15.5 E16 E16.5 E17 E17.5 E18 E18.5 E19 E20 E P
Immunohistochemistry (section) 1 1 3 1 1 3 1 1 3 2 1 1 3 2 1 4
In situ RNA (section) 1 1 3 1 6 1 6 1 7 1 6 1 8 1 1 1 1 1 9
Immunohistochemistry (whole mount) 1 1
In situ RNA (whole mount) 1 1 1 4 5 1 1 1
In situ reporter (knock in) 1
Northern blot 1 1 1 1 1 1 1 1 1 1 1
Western blot 1 1 2
RT-PCR 2 2 3 1 1 2 4 2 6 1 1 1 1 2 2 2 1 2 14
cDNA clones 1 1 2 1 1 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
Plagl1  pleiomorphic adenoma gene-like 1   (Synonyms: Zac1)
Results  Reference
1J:99698 Abramova N, Charniga C, Goderie SK, Temple S, Stage-specific changes in gene expression in acutely isolated mouse CNS progenitor cells. Dev Biol. 2005 Jul 15;283(2):269-81
1J:267687 Adnani L, Dixit R, Chen X, Balakrishnan A, Modi H, Touahri Y, Logan C, Schuurmans C, Plag1 and Plagl2 have overlapping and distinct functions in telencephalic development. Biol Open. 2018 Oct 25;:bio038661
6J:226471 Adnani L, Langevin LM, Gautier E, Dixit R, Parsons K, Li S, Kaushik G, Wilkinson G, Wilson R, Childs S, Nguyen MD, Journot L, Dehay C, Schuurmans C, Zac1 Regulates the Differentiation and Migration of Neocortical Neurons via Pac1. J Neurosci. 2015 Sep 30;35(39):13430-47
11*J:102260 Alam S, Zinyk D, Ma L, Schuurmans C, Members of the Plag gene family are expressed in complementary and overlapping regions in the developing murine nervous system. Dev Dyn. 2005 Nov;234(3):772-82
1*J:70585 Arima T, Drewell RA, Arney KL, Inoue J, Makita Y, Hata A, Oshimura M, Wake N, Surani MA, A conserved imprinting control region at the HYMAI/ZAC domain is implicated in transient neonatal diabetes mellitus. Hum Mol Genet. 2001 Jul 1;10(14):1475-83
2*J:63862 Arima T, Drewell RA, Oshimura M, Wake N, Surani MA, A novel imprinted gene, HYMAI, is located within an imprinted domain on human chromosome 6 containing ZAC. Genomics. 2000 Aug 1;67(3):248-55
2J:99445 Arima T, Kamikihara T, Hayashida T, Kato K, Inoue T, Shirayoshi Y, Oshimura M, Soejima H, Mukai T, Wake N, ZAC, LIT1 (KCNQ1OT1) and p57KIP2 (CDKN1C) are in an imprinted gene network that may play a role in Beckwith-Wiedemann syndrome. Nucleic Acids Res. 2005;33(8):2650-60
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
3J:173627 Billington CJ Jr, Ng B, Forsman C, Schmidt B, Bagchi A, Symer DE, Schotta G, Gopalakrishnan R, Sarver AL, Petryk A, The molecular and cellular basis of variable craniofacial phenotypes and their genetic rescue in Twisted gastrulation mutant mice. Dev Biol. 2011 Jul 1;355(1):21-31
2J:171293 Campbell GR, Baudhuin A, Vranizan K, Ngai J, Transcription factors expressed in olfactory bulb local progenitor cells revealed by genome-wide transcriptome profiling. Mol Cell Neurosci. 2011 Feb;46(2):548-61
1J:143477 Chotalia M, Smallwood SA, Ruf N, Dawson C, Lucifero D, Frontera M, James K, Dean W, Kelsey G, Transcription is required for establishment of germline methylation marks at imprinted genes. Genes Dev. 2009 Jan 1;23(1):105-17
7*J:173393 Chung SH, Marzban H, Aldinger K, Dixit R, Millen K, Schuurmans C, Hawkes R, Zac1 plays a key role in the development of specific neuronal subsets in the mouse cerebellum. Neural Dev. 2011;6:25
9*J:173507 Du X, Rousseau M, Ounissi-Benkalha H, Marchand L, Jetha A, Paraskevas S, Goodyer C, Polychronakos C, Differential expression pattern of ZAC in developing mouse and human pancreas. J Mol Histol. 2011 Apr;42(2):129-36
1*J:296137 Elliott KH, Chen X, Salomone J, Chaturvedi P, Schultz PA, Balchand SK, Servetas JD, Zuniga A, Zeller R, Gebelein B, Weirauch MT, Peterson KA, Brugmann SA, Gli3 utilizes Hand2 to synergistically regulate tissue-specific transcriptional networks. Elife. 2020 Oct 2;9:e56450
3J:206605 Faisal M, Kim H, Kim J, Sexual differences of imprinted genes' expression levels. Gene. 2014 Jan 1;533(1):434-8
1*J:96925 Fan T, Hagan JP, Kozlov SV, Stewart CL, Muegge K, Lsh controls silencing of the imprinted Cdkn1c gene. Development. 2005 Feb;132(4):635-44
2J:221018 Farhy C, Elgart M, Shapira Z, Oron-Karni V, Yaron O, Menuchin Y, Rechavi G, Ashery-Padan R, Pax6 is required for normal cell-cycle exit and the differentiation kinetics of retinal progenitor cells. PLoS One. 2013;8(9):e76489
2J:153616 Gabory A, Ripoche MA, Le Digarcher A, Watrin F, Ziyyat A, Forne T, Jammes H, Ainscough JF, Surani MA, Journot L, Dandolo L, H19 acts as a trans regulator of the imprinted gene network controlling growth in mice. Development. 2009 Oct;136(20):3413-21
1*J:171409 GUDMAP Consortium, GUDMAP: the GenitoUrinary Development Molecular Anatomy Project. www.gudmap.org. 2004;
4J:186674 Hoffmann A, Spengler D, Transient neonatal diabetes mellitus gene Zac1 impairs insulin secretion in mice through Rasgrf1. Mol Cell Biol. 2012 Jul;32(13):2549-60
16J:187821 Iglesias-Platas I, Martin-Trujillo A, Cirillo D, Court F, Guillaumet-Adkins A, Camprubi C, Bourc'his D, Hata K, Feil R, Tartaglia G, Arnaud P, Monk D, Characterization of novel paternal ncRNAs at the Plagl1 locus, including Hymai, predicted to interact with regulators of active chromatin. PLoS One. 2012;7(6):e38907
1J:139700 Jeong J, Li X, McEvilly RJ, Rosenfeld MG, Lufkin T, Rubenstein JL, Dlx genes pattern mammalian jaw primordium by regulating both lower jaw-specific and upper jaw-specific genetic programs. Development. 2008 Sep;135(17):2905-16
1J:302583 Jiang W, Shi J, Zhao J, Wang Q, Cong D, Chen F, Zhang Y, Liu Y, Zhao J, Chen Q, Gu L, Zhou W, Wang C, Fang Z, Geng S, Xie W, Chen LN, Yang Y, Bai Y, Lin H, Li X, ZFP57 dictates allelic expression switch of target imprinted genes. Proc Natl Acad Sci U S A. 2021 Feb 2;118(5):e2005377118
1*J:252112 Kim JJ, Jiwani T, Erwood S, Loree J, Rosenblum ND, Suppressor of fused controls cerebellar neuronal differentiation in a manner modulated by GLI3 repressor and Fgf15. Dev Dyn. 2018 Jan;247(1):156-169
5J:95310 Lepourcelet M, Tou L, Cai L, Sawada J, Lazar AJ, Glickman JN, Williamson JA, Everett AD, Redston M, Fox EA, Nakatani Y, Shivdasani RA, Insights into developmental mechanisms and cancers in the mammalian intestine derived from serial analysis of gene expression and study of the hepatoma-derived growth factor (HDGF). Development. 2005 Jan;132(2):415-27
2J:137668 Lui JC, Finkielstain GP, Barnes KM, Baron J, An imprinted gene network that controls mammalian somatic growth is down-regulated during postnatal growth deceleration in multiple organs. Am J Physiol Regul Integr Comp Physiol. 2008 Jul;295(1):R189-96
3J:91709 Ma D, Shield JP, Dean W, Leclerc I, Knauf C, Burcelin R R, Rutter GA, Kelsey G, Impaired glucose homeostasis in transgenic mice expressing the human transient neonatal diabetes mellitus locus, TNDM. J Clin Invest. 2004 Aug;114(3):339-48
8J:160876 Ma L, Cantrup R, Varrault A, Colak D, Klenin N, Gotz M, McFarlane S, Journot L, Schuurmans C, Zac1 functions through TGFbetaII to negatively regulate cell number in the developing retina. Neural Dev. 2007;2:11
2J:117161 Ma L, Hocking JC, Hehr CL, Schuurmans C, McFarlane S, Zac1 promotes a Muller glial cell fate and interferes with retinal ganglion cell differentiation in Xenopus retina. Dev Dyn. 2007 Jan;236(1):192-202
3*J:162220 Magdaleno S, Jensen P, Brumwell CL, Seal A, Lehman K, Asbury A, Cheung T, Cornelius T, Batten DM, Eden C, Norland SM, Rice DS, Dosooye N, Shakya S, Mehta P, Curran T, BGEM: an in situ hybridization database of gene expression in the embryonic and adult mouse nervous system. PLoS Biol. 2006 Apr;4(4):e86
1J:82790 Mager J, Montgomery ND, de Villena FP, Magnuson T, Genome imprinting regulated by the mouse Polycomb group protein Eed. Nat Genet. 2003 Apr;33(4):502-7
1J:275254 Mahadevan S, Sathappan V, Utama B, Lorenzo I, Kaskar K, Van den Veyver IB, Maternally expressed NLRP2 links the subcortical maternal complex (SCMC) to fertility, embryogenesis and epigenetic reprogramming. Sci Rep. 2017 Mar 20;7:44667
4*J:146872 Marcelin G, Diatloff-Zito C, Nicole A, Robert JJ, Developmental methylation program and concerted expression of Stx11 in mouse tissues. Mamm Genome. 2009 Mar;20(3):131-9
2J:255491 Matsuura T, Miyazaki S, Miyazaki T, Tashiro F, Miyazaki JI, Zfp296 negatively regulates H3K9 methylation in embryonic development as a component of heterochromatin. Sci Rep. 2017 Sep 29;7(1):12462
3*J:93141 Mattar P, Britz O, Johannes C, Nieto M, Ma L, Rebeyka A, Klenin N, Polleux F, Guillemot F, Schuurmans C, A screen for downstream effectors of Neurogenin2 in the embryonic neocortex. Dev Biol. 2004 Sep 15;273(2):373-89
1J:261809 Mayer C, Hafemeister C, Bandler RC, Machold R, Batista Brito R, Jaglin X, Allaway K, Butler A, Fishell G, Satija R, Developmental diversification of cortical inhibitory interneurons. Nature. 2018 Mar 22;555(7697):457-462
4*J:150128 Miro X, Zhou X, Boretius S, Michaelis T, Kubisch C, Alvarez-Bolado G, Gruss P, Haploinsufficiency of the murine polycomb gene Suz12 results in diverse malformations of the brain and neural tube. Dis Model Mech. 2009 Jul-Aug;2(7-8):412-8
1*J:241850 Naiman N, Fujioka K, Fujino M, Valerius MT, Potter SS, McMahon AP, Kobayashi A, Repression of Interstitial Identity in Nephron Progenitor Cells by Pax2 Establishes the Nephron-Interstitium Boundary during Kidney Development. Dev Cell. 2017 May 22;41(4):349-365.e3
1J:112969 Ogawa H, Wu Q, Komiyama J, Obata Y, Kono T, Disruption of parental-specific expression of imprinted genes in uniparental fetuses. FEBS Lett. 2006 Oct 2;580(22):5377-84
6*J:61565 Piras G, El Kharroubi A, Kozlov S, Escalante-Alcalde D, Hernandez L, Copeland NG, Gilbert DJ, Jenkins NA, Stewart CL, Zac1 (Lot1), a potential tumor suppressor gene, and the gene for epsilon-sarcoglycan are maternally imprinted genes: identification by a subtractive screen of novel uniparental fibroblast lines. Mol Cell Biol. 2000 May;20(9):3308-15
2J:318367 Rraklli V, Sodersten E, Nyman U, Hagey DW, Holmberg J, Elevated levels of ZAC1 disrupt neurogenesis and promote rapid in vivo reprogramming. Stem Cell Res. 2016 Jan;16(1):1-9
1J:279058 Seifinejad A, Li S, Mikhail C, Vassalli A, Pradervand S, Arribat Y, Pezeshgi Modarres H, Allen B, John RM, Amati F, Tafti M, Molecular codes and in vitro generation of hypocretin and melanin concentrating hormone neurons. Proc Natl Acad Sci U S A. 2019 Aug 20;116(34):17061-17070
4*J:157819 Shimogori T, Lee DA, Miranda-Angulo A, Yang Y, Wang H, Jiang L, Yoshida AC, Kataoka A, Mashiko H, Avetisyan M, Qi L, Qian J, Blackshaw S, A genomic atlas of mouse hypothalamic development. Nat Neurosci. 2010;13(6):767-75
6*J:290309 Tanaka S, Honda Y, Takaku S, Koike T, Oe S, Hirahara Y, Yoshida T, Takizawa N, Takamori Y, Kurokawa K, Kodama T, Yamada H, Involvement of PLAGL1/ZAC1 in hypocretin/orexin transcription. Int J Mol Med. 2019 May;43(5):2164-2176
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:155773 Tkatchenko TV, Moreno-Rodriguez RA, Conway SJ, Molkentin JD, Markwald RR, Tkatchenko AV, Lack of periostin leads to suppression of Notch1 signaling and calcific aortic valve disease. Physiol Genomics. 2009 Nov 6;39(3):160-8
5*J:88945 Tsuda T, Markova D, Wang H, Evangelisti L, Pan TC, Chu ML, Zinc finger protein Zac1 is expressed in chondrogenic sites of the mouse. Dev Dyn. 2004 Feb;229(2):340-8
7*J:71912 Valente T, Auladell C, Expression pattern of Zac1 mouse gene, a new zinc-finger protein that regulates apoptosis and cellular cycle arrest, in both adult brain and along development. Mech Dev. 2001 Oct;108(1-2):207-11
2*J:149466 Williams JA, Kondo N, Okabe T, Takeshita N, Pilchak DM, Koyama E, Ochiai T, Jensen D, Chu ML, Kane MA, Napoli JL, Enomoto-Iwamoto M, Ghyselinck N, Chambon P, Pacifici M, Iwamoto M, Retinoic acid receptors are required for skeletal growth, matrix homeostasis and growth plate function in postnatal mouse. Dev Biol. 2009 Apr 15;328(2):315-27
2J:318371 Ye A, He H, Kim J, PEG3 binds to H19-ICR as a transcriptional repressor. Epigenetics. 2016 Dec;11(12):889-900
1J:319920 Ypsilanti AR, Pattabiraman K, Catta-Preta R, Golonzhka O, Lindtner S, Tang K, Jones IR, Abnousi A, Juric I, Hu M, Shen Y, Dickel DE, Visel A, Pennachio LA, Hawrylycz M, Thompson CL, Zeng H, Barozzi I, Nord AS, Rubenstein JL, Transcriptional network orchestrating regional patterning of cortical progenitors. Proc Natl Acad Sci U S A. 2021 Dec 21;118(51):e2024795118
11J:171037 Yuasa S, Onizuka T, Shimoji K, Ohno Y, Kageyama T, Yoon SH, Egashira T, Seki T, Hashimoto H, Nishiyama T, Kaneda R, Murata M, Hattori F, Makino S, Sano M, Ogawa S, Prall OW, Harvey RP, Fukuda K, Zac1 is an essential transcription factor for cardiac morphogenesis. Circ Res. 2010 Apr 2;106(6):1083-91
2*J:161712 Zaitoun I, Downs KM, Rosa GJ, Khatib H, Upregulation of imprinted genes in mice: an insight into the intensity of gene expression and the evolution of genomic imprinting. Epigenetics. 2010 Feb;5(2):149-58

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last database update
04/30/2024
MGI 6.23
The Jackson Laboratory