Home > People > Brian Black, PhD

Brian Black, PhD

Professor & Director
Cardiovascular Research Institute
Address: 
555 Mission Bay Blvd South, Rm 352P
UCSF Box 3120
San Francisco, CA 94158
United States
Phone: 
+1 415 502-7628
Research Interests: 
Gene regulatory networks in cardiovascular development and regeneration

Research Summary:
Tissues and organs form during mammalian embryonic development through the integration of numerous signaling and transcriptional pathways. Our major goal is to define pathways controlling organ formation to understand normal development, the molecular basis for congenital defects, and potential mechanisms for organ regeneration and repair. We use a combination of gene knockouts, transgenic reporter assays, biochemical, computational, and genomic approaches to investigate basic developmental mechanisms. We primarily use the mouse as a model system, but several current projects also use cultured cells or zebrafish as models to understand developmental gene regulation. Current work in the lab is focused primarily on cell autonomous mechanisms underlying gene regulation, tissue specification, organ formation and metabolic control during cardiovascular, craniofacial, and neural crest development.

Publications: 

Heart tube morphogenesis is regulated by segment-specific gene regulatory networks controlled by MEF2C.

bioRxiv : the preprint server for biology

Muncie-Vasic JM, Sinha T, Clark AP, Brower EF, Saucerman JJ, Black BL, Bruneau BG

Zfp106 binds to G-quadruplex RNAs and inhibits RAN translation and formation of RNA foci caused by G4C2 repeats.

Proceedings of the National Academy of Sciences of the United States of America

Celona B, Salomonsson SE, Wu H, Dang B, Kratochvil HT, Clelland CD, DeGrado WF, Black BL

An injury-responsive mmp14b enhancer is required for heart regeneration.

Science advances

Zlatanova I, Sun F, Wu RS, Chen X, Lau BH, Colombier P, Sinha T, Celona B, Xu SM, Materna SC, Huang GN, Black BL

Correction: Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice.

eLife

Overman J, Fontaine F, Moustaqil M, Mittal D, Sierecki E, Sacilotto N, Zuegg J, Robertson AAB, Holmes K, Salim AA, Mamidyala S, Butler MS, Robinson AS, Lesieur E, Johnston W, Alexandrov K, Black BL, Hogan BM, De Val S, Capon RJ, Carroll JS, Bailey TL, Koopman P, Jauch R, Cooper MA, Gambin Y, Francois M

ETV2 primes hematoendothelial gene enhancers prior to hematoendothelial fate commitment.

Cell reports

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

A Mesp1-dependent developmental breakpoint in transcriptional and epigenomic specification of early cardiac precursors.

Development (Cambridge, England)

Krup AL, Winchester SAB, Ranade SS, Agrawal A, Devine WP, Sinha T, Choudhary K, Dominguez MH, Thomas R, Black BL, Srivastava D, Bruneau BG

TCF7L1 Exacerbates Abdominal Aortic Aneurysm Prevalence and Severity.

JACC. Basic to translational science

Khachigian LM, Black BL

An enhancer-based gene-therapy strategy for spatiotemporal control of cargoes during tissue repair.

Cell stem cell

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

Cold shock domain-containing protein E1 is a posttranscriptional regulator of the LDL receptor.

Science translational medicine

Smith GA, Padmanabhan A, Lau BH, Pampana A, Li L, Lee CY, Pelonero A, Nishino T, Sadagopan N, Xia VQ, Jain R, Natarajan P, Wu RS, Black BL, Srivastava D, Shokat KM, Chorba JS

Transcription Factor GATA4 Regulates Cell Type-Specific Splicing Through Direct Interaction With RNA in Human Induced Pluripotent Stem Cell-Derived Cardiac Progenitors.

Circulation

Zhu L, Choudhary K, Gonzalez-Teran B, Ang YS, Thomas R, Stone NR, Liu L, Zhou P, Zhu C, Ruan H, Huang Y, Jin S, Pelonero A, Koback F, Padmanabhan A, Sadagopan N, Hsu A, Costa MW, Gifford CA, van Bemmel JG, Hüttenhain R, Vedantham V, Conklin BR, Black BL, Bruneau BG, Steinmetz L, Krogan NJ, Pollard KS, Srivastava D

Transcriptional regulation of vascular smooth muscle cell proliferation, differentiation and senescence: Novel targets for therapy.

Vascular pharmacology

Khachigian LM, Black BL, Ferdinandy P, De Caterina R, Madonna R, Geng YJ

Differential Etv2 threshold requirement for endothelial and erythropoietic development.

Cell reports

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

Transcription factor protein interactomes reveal genetic determinants in heart disease.

Cell

Gonzalez-Teran B, Pittman M, Felix F, Thomas R, Richmond-Buccola D, Hüttenhain R, Choudhary K, Moroni E, Costa MW, Huang Y, Padmanabhan A, Alexanian M, Lee CY, Maven BEJ, Samse-Knapp K, Morton SU, McGregor M, Gifford CA, Seidman JG, Seidman CE, Gelb BD, Colombo G, Conklin BR, Black BL, Bruneau BG, Krogan NJ, Pollard KS, Srivastava D

Abstract 11332: Integration of Protein Interactome Networks with Congenital Heart Disease Variants Reveals Candidate Disease Genes.

Circulation

Barbara Gonzalez Teran, Maureen Pittman, Reuben Thomas, Franco Felix, Desmond Richmond-Buccola, Krishna Choudhary, Elisabetta Moroni, Colombo Giorgio, Arun Padmanabhan, Mauro Costa, Yu Huang, Michael Alexanian, Clara Lee, Bonie Cole, Kaitlen Samse-Knapp, Michael McGregor, Casey Gifford, Ruth Huttenhain, Bruce Gelb, Bruce Conklin, Brian L Black, Benoit Bruneau, Nevan Krogan, Katherine Pollard, Deepak Srivastava

Comprehensive cell type decomposition of circulating cell-free DNA with CelFiE.

Nature communications

Caggiano C, Celona B, Garton F, Mefford J, Black BL, Henderson R, Lomen-Hoerth C, Dahl A, Zaitlen N

Control of ribosomal protein synthesis by the Microprocessor complex.

Science signaling

Jiang X, Prabhakar A, Van der Voorn SM, Ghatpande P, Celona B, Venkataramanan S, Calviello L, Lin C, Wang W, Black BL, Floor SN, Lagna G, Hata A

ATAC-Seq Reveals an Isl1 Enhancer That Regulates Sinoatrial Node Development and Function.

Circulation research

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

Genome-Wide Analysis Identifies an Essential Human TBX3 Pacemaker Enhancer.

Circulation research

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

Presynaptic Homeostasis Opposes Disease Progression in Mouse Models of ALS-Like Degeneration: Evidence for Homeostatic Neuroprotection.

Neuron

Orr BO, Hauswirth AG, Celona B, Fetter RD, Zunino G, Kvon EZ, Zhu Y, Pennacchio LA, Black BL, Davis GW

Estimating the Rate of Cell Type Degeneration from Epigenetic Sequencing of Cell-Free DNA.

Christa Caggiano, Barbara Celona, Fleur Garton, Joel Mefford, Brian Black, Catherine Lomen-Hoerth, Andrew Dahl, Noah Zaitlen

Loss-of-function variants in myocardin cause congenital megabladder in humans and mice.

The Journal of clinical investigation

Houweling AC, Beaman GM, Postma AV, Gainous TB, Lichtenbelt KD, Brancati F, Lopes FM, van der Made I, Polstra AM, Robinson ML, Wright KD, Ellingford JM, Jackson AR, Overwater E, Genesio R, Romano S, Camerota L, D'Angelo E, Meijers-Heijboer EJ, Christoffels VM, McHugh KM, Black BL, Newman WG, Woolf AS, Creemers EE

Noncoding deletions reveal a gene that is critical for intestinal function.

Nature

Oz-Levi D, Olender T, Bar-Joseph I, Zhu Y, Marek-Yagel D, Barozzi I, Osterwalder M, Alkelai A, Ruzzo EK, Han Y, Vos ESM, Reznik-Wolf H, Hartman C, Shamir R, Weiss B, Shapiro R, Pode-Shakked B, Tatarskyy P, Milgrom R, Schvimer M, Barshack I, Imai DM, Coleman-Derr D, Dickel DE, Nord AS, Afzal V, van Bueren KL, Barnes RM, Black BL, Mayhew CN, Kuhar MF, Pitstick A, Tekman M, Stanescu HC, Wells JM, Kleta R, de Laat W, Goldstein DB, Pras E, Visel A, Lancet D, Anikster Y, Pennacchio LA

Venous endothelin modulates responsiveness of cardiac sympathetic axons to arterial semaphorin.

eLife

Poltavski DM, Colombier P, Hu J, Duron A, Black BL, Makita T

Cardiovascular development and survival require Mef2c function in the myocardial but not the endothelial lineage.

Developmental biology

Materna SC, Sinha T, Barnes RM, Lammerts van Bueren K, Black BL

Genomic analysis of transcriptional networks directing progression of cell states during MGE development.

Neural development

Sandberg M, Taher L, Hu J, Black BL, Nord AS, Rubenstein JLR

Cooperative activation of cardiac transcription through myocardin bridging of paired MEF2 sites.

Development (Cambridge, England)

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

Pharmacological targeting of the transcription factor SOX18 delays breast cancer in mice.

eLife

Overman J, Fontaine F, Moustaqil M, Mittal D, Sierecki E, Sacilotto N, Zuegg J, Robertson AAB, Holmes K, Salim AA, Mamidyala S, Butler MS, Robinson AS, Lesieur E, Johnston W, Alexandrov K, Black BL, Hogan BM, De Val S, Capon RJ, Carroll JS, Bailey TL, Koopman P, Jauch R, Cooper MA, Gambin Y, Francois M

Suppression of C9orf72 RNA repeat-induced neurotoxicity by the ALS-associated RNA-binding protein Zfp106.

eLife

Celona B, Dollen JV, Vatsavayai SC, Kashima R, Johnson JR, Tang AA, Hata A, Miller BL, Huang EJ, Krogan NJ, Seeley WW, Black BL

Fast revascularization of the injured area is essential to support zebrafish heart regeneration.

Proceedings of the National Academy of Sciences of the United States of America

Marín-Juez R, Marass M, Gauvrit S, Rossi A, Lai SL, Materna SC, Black BL, Stainier DY

Modulation of tissue repair by regeneration enhancer elements.

Nature

Kang J, Hu J, Karra R, Dickson AL, Tornini VA, Nachtrab G, Gemberling M, Goldman JA, Black BL, Poss KD

MEF2C regulates outflow tract alignment and transcriptional control of Tdgf1.

Development (Cambridge, England)

Barnes RM, Harris IS, Jaehnig EJ, Sauls K, Sinha T, Rojas A, Schachterle W, McCulley DJ, Norris RA, Black BL

Nodal Signaling and Congenital Heart Defects.

Etiology and Morphogenesis of Congenital Heart Disease

Ralston M. Barnes, Brian L. Black

Endothelin signaling activates Mef2c expression in the neural crest through a MEF2C-dependent positive-feedback transcriptional pathway.

Development (Cambridge, England)

Hu J, Verzi MP, Robinson AS, Tang PL, Hua LL, Xu SM, Kwok PY, Black BL

Identification of novel Fgf enhancers and their role in dental evolution.

Evolution & development

Tapaltsyan V, Charles C, Hu J, Mindell D, Ahituv N, Wilson GM, Black BL, Viriot L, Klein OD

Mef2c-F10N enhancer driven β-galactosidase (LacZ) and Cre recombinase mice facilitate analyses of gene function and lineage fate in neural crest cells.

Developmental biology

Aoto K, Sandell LL, Butler Tjaden NE, Yuen KC, Watt KE, Black BL, Durnin M, Trainor PA

Myocyte enhancer factor 2C function in skeletal muscle is required for normal growth and glucose metabolism in mice.

Skeletal muscle

Anderson CM, Hu J, Barnes RM, Heidt AB, Cornelissen I, Black BL

Specification of the mouse cardiac conduction system in the absence of Endothelin signaling.

Developmental biology

Hua LL, Vedantham V, Barnes RM, Hu J, Robinson AS, Bressan M, Srivastava D, Black BL

Abstract 327: ETS Factors Regulate the VEGF-Dependent, Arterial-Specific Expression of Dll4.

Arteriosclerosis Thrombosis and Vascular Biology

Lan T Dang, Joshua D Wythe, Patrick W Devine, Emilie Boudreau, Stanley T Artap, Daniel He, William Schachterle, Didier Y Stainier, Peter Oettgen, Brian L Black, Benoit G Bruneau, Jason E Fish

Chromatin stretch enhancer states drive cell-specific gene regulation and harbor human disease risk variants.

Proceedings of the National Academy of Sciences of the United States of America

Parker SC, Stitzel ML, Taylor DL, Orozco JM, Erdos MR, Akiyama JA, van Bueren KL, Chines PS, Narisu N, NISC Comparative Sequencing Program, Black BL, Visel A, Pennacchio LA, Collins FS, National Institutes of Health Intramural Sequencing Center Comparative Sequencing Program Authors, NISC Comparative Sequencing Program Authors

ETS factors regulate Vegf-dependent arterial specification.

Developmental cell

Wythe JD, Dang LT, Devine WP, Boudreau E, Artap ST, He D, Schachterle W, Stainier DY, Oettgen P, Black BL, Bruneau BG, Fish JE

Regulation of endothelial and hematopoietic development by the ETS transcription factor Etv2.

Current opinion in hematology

Lammerts van Bueren K, Black BL

Chapter 3 Cardiac Myocyte Specification and Differentiation.

Muscle

Benoit G. Bruneau, Brian L. Black

Transcription factor pathways and congenital heart disease.

Current topics in developmental biology

McCulley DJ, Black BL

Large-scale discovery of enhancers from human heart tissue.

Nature genetics

May D, Blow MJ, Kaplan T, McCulley DJ, Jensen BC, Akiyama JA, Holt A, Plajzer-Frick I, Shoukry M, Wright C, Afzal V, Simpson PC, Rubin EM, Black BL, Bristow J, Pennacchio LA, Visel A

Vascular endothelial and endocardial progenitors differentiate as cardiomyocytes in the absence of Etsrp/Etv2 function.

Development (Cambridge, England)

Palencia-Desai S, Kohli V, Kang J, Chi NC, Black BL, Sumanas S

ETS-dependent regulation of a distal Gata4 cardiac enhancer.

Developmental biology

Schachterle W, Rojas A, Xu SM, Black BL

Etsrp/Etv2 initiates endothelial/endocardial and inhibits myocardial differentiation by two distinct mechanisms in zebrafish embryos.

Developmental biology

Sharina Palencia-Desai, Vikram Kohli, Jione Kang, Neil C. Chi, Brian L. Black, Saulius Sumanas

FGF-dependent regulation of VEGF receptor 2 expression in mice.

The Journal of clinical investigation

Murakami M, Nguyen LT, Hatanaka K, Schachterle W, Chen PY, Zhuang ZW, Black BL, Simons M

The MADS box transcription factor MEF2C regulates melanocyte development and is a direct transcriptional target and partner of SOX10.

Development (Cambridge, England)

Agarwal P, Verzi MP, Nguyen T, Hu J, Ehlers ML, McCulley DJ, Xu SM, Dodou E, Anderson JP, Wei ML, Black BL

Hand2 function in second heart field progenitors is essential for cardiogenesis.

Developmental biology

Tsuchihashi T, Maeda J, Shin CH, Ivey KN, Black BL, Olson EN, Yamagishi H, Srivastava D

Bmp signaling regulates myocardial differentiation from cardiac progenitors through a MicroRNA-mediated mechanism.

Developmental cell

Wang J, Greene SB, Bonilla-Claudio M, Tao Y, Zhang J, Bai Y, Huang Z, Black BL, Wang F, Martin JF

ChIP-Seq identification of weakly conserved heart enhancers.

Nature genetics

Blow MJ, McCulley DJ, Li Z, Zhang T, Akiyama JA, Holt A, Plajzer-Frick I, Shoukry M, Wright C, Chen F, Afzal V, Bristow J, Ren B, Black BL, Rubin EM, Visel A, Pennacchio LA

Development of the endocardium.

Pediatric cardiology

Harris IS, Black BL

Chapter 9.5 Myocyte Enhancer Factor 2 Transcription Factors in Heart Development and Disease.

Heart Development and Regeneration

Brian L. Black, Richard M. Cripps

An endoderm-specific transcriptional enhancer from the mouse Gata4 gene requires GATA and homeodomain protein-binding sites for function in vivo.

Developmental dynamics : an official publication of the American Association of Anatomists

Rojas A, Schachterle W, Xu SM, Black BL

Identification and characterization of novel polymorphisms in the basal promoter of the human transporter, MATE1.

Pharmacogenetics and genomics

Ha Choi J, Wah Yee S, Kim MJ, Nguyen L, Ho Lee J, Kang JO, Hesselson S, Castro RA, Stryke D, Johns SJ, Kwok PY, Ferrin TE, Goo Lee M, Black BL, Ahituv N, Giacomini KM

Reptilian heart development and the molecular basis of cardiac chamber evolution.

Nature

Koshiba-Takeuchi K, Mori AD, Kaynak BL, Cebra-Thomas J, Sukonnik T, Georges RO, Latham S, Beck L, Beck L, Henkelman RM, Black BL, Olson EN, Wade J, Takeuchi JK, Nemer M, Gilbert SF, Bruneau BG

Erratum: Reptilian heart development and the molecular basis of cardiac chamber evolution.

Nature

Kazuko Koshiba-Takeuchi, Alessandro D. Mori, Bogac L. Kaynak, Judith Cebra-Thomas, Tatyana Sukonnik, Romain O. Georges, Stephany Latham, Laurel Beck, R. Mark Henkelman, Brian L. Black, Eric N. Olson, Juli Wade, Jun K. Takeuchi, Mona Nemer, Scott F. Gilbert, Benoit G. Bruneau

Maintenance of blastemal proliferation by functionally diverse epidermis in regenerating zebrafish fins.

Developmental biology

Lee Y, Hami D, De Val S, Kagermeier-Schenk B, Wills AA, Black BL, Weidinger G, Poss KD

Transcriptional control of endothelial cell development.

Developmental cell

De Val S, Black BL

Identification and characterization of proximal promoter polymorphisms in the human concentrative nucleoside transporter 2 (SLC28A2).

The Journal of pharmacology and experimental therapeutics

Yee SW, Shima JE, Hesselson S, Nguyen L, De Val S, Lafond RJ, Kawamoto M, Johns SJ, Stryke D, Kwok PY, Ferrin TE, Black BL, Gurwitz D, Ahituv N, Giacomini KM

Combinatorial regulation of endothelial gene expression by ets and forkhead transcription factors.

Cell

De Val S, Chi NC, Meadows SM, Minovitsky S, Anderson JP, Harris IS, Ehlers ML, Agarwal P, Visel A, Xu SM, Pennacchio LA, Dubchak I, Krieg PA, Stainier DY, Black BL

BMP4 is required in the anterior heart field and its derivatives for endocardial cushion remodeling, outflow tract septation, and semilunar valve development.

Developmental dynamics : an official publication of the American Association of Anatomists

McCulley DJ, Kang JO, Martin JF, Black BL

A p38 MAPK-MEF2C pathway regulates B-cell proliferation.

Proceedings of the National Academy of Sciences of the United States of America

Khiem D, Cyster JG, Schwarz JJ, Black BL

Foxn4 directly regulates tbx2b expression and atrioventricular canal formation.

Genes & development

Chi NC, Shaw RM, De Val S, Kang G, Jan LY, Black BL, Stainier DY

Transcriptional pathways in heart development.

The FASEB Journal

Brian L Black, Jione Kang, Ian S Harris, William Schachterle

Determinants of myogenic specificity within MyoD are required for noncanonical E box binding.

Molecular and Cellular Biology

Heidt AB, Rojas A, Harris IS, Black BL

Transcriptional control of second heart field development.

Developmental biology

Brian L. Black, Jione Kang, Ian S. Harris, Will Schachterle, Anabel Rojas

The transcription factor MEF2C is required for craniofacial development.

Developmental cell

Verzi MP, Agarwal P, Brown C, McCulley DJ, Schwarz JJ, Black BL

The heart's Da Vinci code: a Renaissance at Keystone.

Development (Cambridge, England)

Bruneau BG, Black BL

An Nkx2-5/Bmp2/Smad1 negative feedback loop controls heart progenitor specification and proliferation.

Cell

Prall OW, Menon MK, Solloway MJ, Watanabe Y, Zaffran S, Bajolle F, Biben C, McBride JJ, Robertson BR, Chaulet H, Stennard FA, Wise N, Schaft D, Wolstein O, Furtado MB, Shiratori H, Chien KR, Hamada H, Black BL, Saga Y, Robertson EJ, Buckingham ME, Harvey RP

Model systems for the study of heart development and disease.

Seminars in Cell and Developmental Biology

Robert A. Schulz, Brian L. Black

Transcriptional pathways in second heart field development.

Seminars in cell & developmental biology

Black BL

Transcriptional Control of Cardiac Boundary Formation.

Cardiovascular Development

Anabel Rojas, Brian L. Black

In vivo enhancer analysis of human conserved non-coding sequences.

Nature

Pennacchio LA, Ahituv N, Moses AM, Prabhakar S, Nobrega MA, Shoukry M, Minovitsky S, Dubchak I, Holt A, Lewis KD, Plajzer-Frick I, Akiyama J, De Val S, Afzal V, Black BL, Couronne O, Eisen MB, Visel A, Rubin EM

Pitx2 regulates cardiac left-right asymmetry by patterning second cardiac lineage-derived myocardium.

Developmental biology

Ai D, Liu W, Ma L, Dong F, Lu MF, Wang D, Verzi MP, Cai C, Gage PJ, Evans S, Black BL, Brown NA, Martin JF

Required, tissue-specific roles for Fgf8 in outflow tract formation and remodeling.

Development (Cambridge, England)

Park EJ, Ogden LA, Talbot A, Evans S, Cai CL, Black BL, Frank DU, Moon AM

Murine T-box transcription factor Tbx20 acts as a repressor during heart development, and is essential for adult heart integrity, function and adaptation.

Development (Cambridge, England)

Stennard FA, Costa MW, Lai D, Biben C, Furtado MB, Solloway MJ, McCulley DJ, Leimena C, Preis JI, Dunwoodie SL, Elliott DE, Prall OW, Black BL, Fatkin D, Harvey RP

Tbx20 dose-dependently regulates transcription factor networks required for mouse heart and motoneuron development.

Development (Cambridge, England)

Takeuchi JK, Mileikovskaia M, Koshiba-Takeuchi K, Heidt AB, Mori AD, Arruda EP, Gertsenstein M, Georges R, Davidson L, Mo R, Hui CC, Henkelman RM, Nemer M, Black BL, Nagy A, Bruneau BG

HRC is a direct transcriptional target of MEF2 during cardiac, skeletal, and arterial smooth muscle development in vivo.

Molecular and Cellular Biology

Anderson JP, Dodou E, Heidt AB, De Val SJ, Jaehnig EJ, Greene SB, Olson EN, Black BL

Mitochondrial deficiency and cardiac sudden death in mice lacking the MEF2A transcription factor.

Nature medicine

Naya FJ, Black BL, Wu H, Bassel-Duby R, Richardson JA, Hill JA, Olson EN

N-twist, an evolutionarily conserved bHLH protein expressed in the developing CNS, functions as a transcriptional inhibitor.

Developmental biology

Verzi MP, Anderson JP, Dodou E, Kelly KK, Greene SB, North BJ, Cripps RM, Black BL

Activated notch inhibits myogenic activity of the MADS-Box transcription factor myocyte enhancer factor 2C.

Molecular and Cellular Biology

Wilson-Rawls J, Molkentin JD, Black BL, Olson EN

Transcriptional control of muscle development by myocyte enhancer factor-2 (MEF2) proteins.

Annual review of cell and developmental biology

Black BL, Olson EN

The MEF2A 3' untranslated region functions as a cis-acting translational repressor.

Molecular and Cellular Biology

Black BL, Lu J, Olson EN

MEF2B is a potent transactivator expressed in early myogenic lineages.

Molecular and Cellular Biology

Molkentin JD, Firulli AB, Black BL, Martin JF, Hustad CM, Copeland N, Jenkins N, Lyons G, Olson EN

Mutational analysis of the DNA binding, dimerization, and transcriptional activation domains of MEF2C.

Molecular and Cellular Biology

Molkentin JD, Black BL, Martin JF, Olson EN

Faculty Type: 
Core CVRI Faculty