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MAFA (gene)
Roles and Regulation of Transcription Factor Mafa in Islet Β-Cells
Genetic Drivers of Pancreatic Islet Function
Mafa Enables Pdx1 to Effectively Convert Pancreatic Islet Progenitors and Committed
MAFA-AS1, a Long Non-Coding RNA, Predicts for Poor Survival of Hepatocellular Carcinoma
Depletion of the Phosphatase Inhibitor, PPP1R1A, May Contribute to Β-Cell Loss in Type 1 Diabetes Jessica Rose Chaffey Doctor O
Mafa Enables Pdx1 to Effectively Convert Pancreatic Islet Progenitors and Committed Islet A-Cells Into B-Cells in Vivo
Automation of Functional Annotation of Genomes and Transcriptomes
POGLUT1, the Putative Effector Gene Driven by Rs2293370 in Primary
P43, a Truncated Form of Thyroid Hormone Receptor , Regulates
11-8065: Polyclonal Antibody to Mafa Description
Mafa Expression Preserves Immune Homeostasis in Human and Mouse Islets
MAFA Missense Mutation Causes Familial Insulinomatosis and Diabetes Mellitus
Table S1. 103 Ferroptosis-Related Genes Retrieved from the Genecards
Mafa Has Strong Cell Transforming Ability but Is a Weak Transactivator
Differentiation of Pancreatic Endocrine Progenitors Reversibly Blocked by Premature Induction of Mafa
MLL3 and MLL4 Methyltransferases Bind to the MAFA and MAFB Transcription Factors to Regulate Islet B-Cell Function
Integrative Bioinformatic Analysis of Transcriptomic Data Identifies Conserved Molecular Pathways Underlying Ionizing Radiation-Induced Bystander Effects (RIBE)
The P300 and CBP Transcriptional Coactivators Are Required for Β
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PDX1, Neurogenin-3, and MAFA: Critical Transcription Regulators For
Insulin Transactivator Mafa Regulates Intrathymic Expression of Insulin
A Small-Molecule Inducer of PDX1 Expression Identified by High
Anti-Mafa Antibody (ARG59747)
Generation and Characterization of Mafa-Kusabira Orange Mice
Temporal Transcriptome Analysis Reveals Dynamic Gene Expression Patterns Driving Β-Cell Maturation
Male-Biased Islet Β Cell Dysfunction Is Caused by the MODY MAFA S64F
Discovering Region-Wise DNA Methylation Levels That Modify SNP-Associated Disease Risk Julia Romanowska1,2,3* , Øystein A
Mafa Is a Dedicated Activator of the Insulin Gene in Vivo
A Proof-Of-Concept Study for the Pathogenetic Role of Enhancer Hypomethylation of MYBPHL in Multiple Myeloma
CBP/P300 HAT Maintains the Gene Network Critical for Β Cell Identity
Mafa, a Novel Member of the Maf Proto-Oncogene Family, Displays Developmental Regulation and Mitogenic Capacity in Avian Neuroretina Cells
Roles and Regulation of Transcription Factor Mafa in Islet Β-Cells
Differentially Expressed Maf Family Transcription Factors, C-Maf and Mafa, Activate Glucagon and Insulin Gene Expression in Pancreatic Islet - and -Cells
PDX1LOW MAFALOW β-Cells Contribute to Islet Function And
Examining How the MAFB Transcription Factor Affects Islet Β
Mafa and Mafb Regulate Genes Critical to -Cells in A
Inactivation of Specific Β Cell Transcription Factors in Type 2 Diabetes