Tanvi Sinha • UCSF Profiles (original) (raw)
- MEF2C controls segment-specific gene regulatory networks that direct heart tube morphogenesis. Genes Dev. 2025 Dec 01; 39(23-24):1451-1467. Muncie-Vasic JM, Sinha T, Clark AP, Brower EF, Saucerman JJ, Black BL, Bruneau BG. PMID: 40883017; PMCID: PMC12412991.
View in: PubMed Mentions: 2 Fields:
Translation:AnimalsCells - Lineage Tracing Reveals a Shared Cellular Origin for Supraclavicular Brown and Inguinal Beige Adipocytes. bioRxiv. 2025 Oct 03. Ran Y, Zhang K, Shen YT, Mo Q, Wang Z, Yalamanchili HK, John S, Kogiso M, Gao X, Wang C, Sinha T, Black BL, Chen MH. PMID: 41256459; PMCID: PMC12621668.
View in: PubMed Mentions: - MEF2C controls segment-specific gene regulatory networks that direct heart tube morphogenesis. bioRxiv. 2025 Mar 27. Muncie-Vasic JM, Sinha T, Clark AP, Brower EF, Saucerman JJ, Black BL, Bruneau BG. PMID: 39554149; PMCID: PMC11566030.
View in: PubMed Mentions: - The circular RNA circNFIX regulates MEF2C expression in muscle satellite cells in spastic cerebral palsy. J Biol Chem. 2024 12; 300(12):107987. Romero B, Hoque P, Robinson KG, Lee SK, Sinha T, Panda A, Shrader MW, Parashar V, Akins RE, Batish M. PMID: 39542245; PMCID: PMC11697776.
View in: PubMed Mentions: 4 Fields:
Translation:HumansAnimalsCells - An injury-responsive mmp14b enhancer is required for heart regeneration. Sci Adv. 2023 12; 9(48):eadh5313. Zlatanova I, Sun F, Wu RS, Chen X, Lau BH, Colombier P, Sinha T, Celona B, Xu SM, Materna SC, Huang GN, Black BL. PMID: 38019918; PMCID: PMC10686572.
View in: PubMed Mentions: 10 Fields:
Translation:AnimalsCells - ETV2 primes hematoendothelial gene enhancers prior to hematoendothelial fate commitment. Cell Rep. 2023 06 27; 42(6):112665. Steimle JD, Kim C, Rowton M, Nadadur RD, Wang Z, Stocker M, Hoffmann AD, Hanson E, Kweon J, Sinha T, Choi K, Black BL, Cunningham JM, Moskowitz IP, Ikegami K. PMID: 37330911; PMCID: PMC10592526.
View in: PubMed Mentions: 3 Fields:
Translation:Cells - A Mesp1-dependent developmental breakpoint in transcriptional and epigenomic specification of early cardiac precursors. Development. 2023 05 01; 150(9). Krup AL, Winchester SAB, Ranade SS, Agrawal A, Devine WP, Sinha T, Choudhary K, Dominguez MH, Thomas R, Black BL, Srivastava D, Bruneau BG. PMID: 36994838; PMCID: PMC10259516.
View in: PubMed Mentions: 7 Fields:
Translation:AnimalsCells - An enhancer-based gene-therapy strategy for spatiotemporal control of cargoes during tissue repair. Cell Stem Cell. 2023 01 05; 30(1):96-111.e6. Yan R, Cigliola V, Oonk KA, Petrover Z, DeLuca S, Wolfson DW, Vekstein A, Mendiola MA, Devlin G, Bishawi M, Gemberling MP, Sinha T, Sargent MA, York AJ, Shakked A, DeBenedittis P, Wendell DC, Ou J, Kang J, Goldman JA, Baht GS, Karra R, Williams AR, Bowles DE, Asokan A, Tzahor E, Gersbach CA, Molkentin JD, Bursac N, Black BL, Poss KD. PMID: 36516837; PMCID: PMC9830588.
View in: PubMed Mentions: 37 Fields:
Translation:AnimalsCells - Differential Etv2 threshold requirement for endothelial and erythropoietic development. Cell Rep. 2022 05 31; 39(9):110881. Sinha T, Lammerts van Bueren K, Dickel DE, Zlatanova I, Thomas R, Lizama CO, Xu SM, Zovein AC, Ikegami K, Moskowitz IP, Pollard KS, Pennacchio LA, Black BL. PMID: 35649376; PMCID: PMC9203129.
View in: PubMed Mentions: 9 Fields: - Genome-Wide Analysis Identifies an Essential Human TBX3 Pacemaker Enhancer. Circ Res. 2020 12 04; 127(12):1522-1535. van Eif VWW, Protze SI, Bosada FM, Yuan X, Sinha T, van Duijvenboden K, Ernault AC, Mohan RA, Wakker V, de Gier-de Vries C, Hooijkaas IB, Wilson MD, Verkerk AO, Bakkers J, Boukens BJ, Black BL, Scott IC, Christoffels VM. PMID: 33040635; PMCID: PMC8153223.
View in: PubMed Mentions: 22 Fields:
Translation:HumansAnimalsCells - ATAC-Seq Reveals an Isl1 Enhancer That Regulates Sinoatrial Node Development and Function. Circ Res. 2020 12 04; 127(12):1502-1518. Galang G, Mandla R, Ruan H, Jung C, Sinha T, Stone NR, Wu RS, Mannion BJ, Allu PKR, Chang K, Rammohan A, Shi MB, Pennacchio LA, Black BL, Vedantham V. PMID: 33044128; PMCID: PMC7720845.
View in: PubMed Mentions: 37 Fields:
Translation:HumansAnimalsCells - Cardiovascular development and survival require Mef2c function in the myocardial but not the endothelial lineage. Dev Biol. 2019 01 15; 445(2):170-177. Materna SC, Sinha T, Barnes RM, Lammerts van Bueren K, Black BL. PMID: 30521808; PMCID: PMC6370303.
View in: PubMed Mentions: 26 Fields:
Translation:Animals - Cooperative activation of cardiac transcription through myocardin bridging of paired MEF2 sites. Development. 2017 04 01; 144(7):1235-1241. Anderson CM, Hu J, Thomas R, Gainous TB, Celona B, Sinha T, Dickel DE, Heidt AB, Xu SM, Bruneau BG, Pollard KS, Pennacchio LA, Black BL. PMID: 28351867; PMCID: PMC5399617.
View in: PubMed Mentions: 11 Fields:
Translation:AnimalsCells - Spatial regulation of cell cohesion by Wnt5a during second heart field progenitor deployment. Dev Biol. 2016 Apr 01; 412(1):18-31. Li D, Sinha T, Ajima R, Seo HS, Yamaguchi TP, Wang J. PMID: 26916252; PMCID: PMC4814329.
View in: PubMed Mentions: 18 Fields:
Translation:AnimalsCells - MEF2C regulates outflow tract alignment and transcriptional control of Tdgf1. Development. 2016 Mar 01; 143(5):774-9. Barnes RM, Harris IS, Jaehnig EJ, Sauls K, Sinha T, Rojas A, Schachterle W, McCulley DJ, Norris RA, Black BL. PMID: 26811383; PMCID: PMC4813332.
View in: PubMed Mentions: 33 Fields:
Translation:HumansAnimalsCells - Loss of tumor suppressive microRNA-31 enhances TRADD/NF-κB signaling in glioblastoma. Oncotarget. 2015 Jul 10; 6(19):17805-16. Rajbhandari R, McFarland BC, Patel A, Gerigk M, Gray GK, Fehling SC, Bredel M, Berbari NF, Kim H, Marks MP, Meares GP, Sinha T, Chuang J, Benveniste EN, Nozell SE. PMID: 26164206; PMCID: PMC4627347.
View in: PubMed Mentions: 31 Fields:
Translation:HumansAnimalsCells - Mapping the dynamic expression of Wnt11 and the lineage contribution of Wnt11-expressing cells during early mouse development. Dev Biol. 2015 Feb 15; 398(2):177-92. Sinha T, Lin L, Li D, Davis J, Evans S, Wynshaw-Boris A, Wang J. PMID: 25448697; PMCID: PMC4317568.
View in: PubMed Mentions: 17 Fields:
Translation:AnimalsCells - Loss of Wnt5a disrupts second heart field cell deployment and may contribute to OFT malformations in DiGeorge syndrome. Hum Mol Genet. 2015 Mar 15; 24(6):1704-16. Sinha T, Li D, Théveniau-Ruissy M, Hutson MR, Kelly RG, Wang J. PMID: 25410658; PMCID: PMC4381755.
View in: PubMed Mentions: 29 Fields:
Translation:AnimalsCells - Disheveled mediated planar cell polarity signaling is required in the second heart field lineage for outflow tract morphogenesis. Dev Biol. 2012 Oct 01; 370(1):135-44. Sinha T, Wang B, Evans S, Wynshaw-Boris A, Wang J. PMID: 22841628; PMCID: PMC3432663.
View in: PubMed Mentions: 43 Fields:
Translation:AnimalsCells - Wnt signaling in mammalian development: lessons from mouse genetics. Cold Spring Harb Perspect Biol. 2012 May 01; 4(5). Wang J, Sinha T, Wynshaw-Boris A. PMID: 22550229; PMCID: PMC3331704.
View in: PubMed Mentions: 62 Fields:
Translation:AnimalsCells - Disruption of PCP signaling causes limb morphogenesis and skeletal defects and may underlie Robinow syndrome and brachydactyly type B. Hum Mol Genet. 2011 Jan 15; 20(2):271-85. Wang B, Sinha T, Jiao K, Serra R, Wang J. PMID: 20962035; PMCID: PMC3031336.
View in: PubMed Mentions: 61 Fields:
Translation:AnimalsCells
This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.
This graph shows the number and percent of publications by field. Fields are based on how the National Library of Medicine (NLM) classifies the publications' journals and might not represent the specific topics of the publications. Note that an individual publication can be assigned to more than one field. As a result, the publication counts in this graph might add up to more than the number of publications the person has written. To see the data as text, click here.
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