Header Logo

Search Result Details

This page shows the details of why an item matched the keywords from your search.
One or more keywords matched the following properties of Fang, Minggang
PropertyValue
overview

My research at UMass Medical School is directed toward to understanding the molecular basis of dysregulation of transcription and gene silencing in disease models using the cutting edge tools. I have extensively used transcription-based approaches and functional screens to identify new genes and regulatory pathways involved in neurological diseases and cancers.

1. Epigenetic silencing in cancer. I have used transcription-based approaches and functional screens to identify new genes and transcriptional regulatory pathways involved in cancer. More recently, I have made significant contributions to our understanding of oncogene-directed epigenetic silencing. To our knowledge, we are the only group that has used large-scale RNAi screening to identify factors involved in epigenetic silencing (Serra et al., 2014; Fang et al., 2014; Fang et al, 2016) and then, through RNAi-based epistasis experiments, order them into pathways. Accordingly, our work has singularly delineated highly specific pathways that are initiated by oncoproteins and culminate in transcriptional silencing of tumor suppressor genes to promote transformation. Furthermore, the pathways we have identified are directly linked to cellular transformation, have enhanced our understanding of how normal cells become cancerous, and have revealed new therapeutic targets.

2. Drug targets of Fragile X syndrome and Friedreich's Ataxia. Fragile X Syndrome (FXS) is the most common genetic form of mental retardation, and occurs in approximately 1 in 4,000 males and 1 in 8,000 females. To date, no specific and effective therapy exists for FXS, and current treatments are only directed to improve behavioral symptoms. Thus, there is a general need for the development of novel compositions and methods for treating FXS. Through candidate-based RNAi screen and compound screens, , I have identified 7 new drug targets and 6 novel small molecules to rescue FXS (US patent). Friedreich’s Ataxia (FRDA) is a lethal autosomal recessive neurodegenerative disorder caused by the homozygous GAA repeat expansion in the first intron of frataxin gene. FRDA is the most common genetic form of ataxia, and occurs in approximately 1 in 50,000 people. Symptoms typically first appear at 5-15 years of age, followed by progressive neurodegeneration. Typically, within 10 years following the onset of symptoms, the patient is wheelchair bound. The disease affects multiple organs, including the heart and pancreas. Patients have a shortened life expectancy, with most patients dying of cardiac failure. To date, there is no effective therapy for FRDA. Taking similar approaches to FXS, I have identified 10 epigenetic factors as drug targets and 23 novel compounds to rescue the functional defect of FRDA neurons (US patent).

3. Mechanisms on Genomic Instability. Genomic instability is a hallmark of cancer. My recent study has shown that MEN1 is a melanoma tumor suppressor whose loss elevates mutation rate (Fang et al, 2013). To screen the genes whose loss increases the mutation rates, I have recently performed a genome-wide loss of function RNAi screen and identified 72 factors whose knockdown increase the mutation rate. These proteins are tumor suppressors, transcription factors, regulate apoptosis, autophagy and cell cycle, or play roles in cellular signal transduction, chromosomal segregation, or are functionally unknown. My further studies demonstrate one candidate CRTC2 is a lymphoma tumor suppressor gene and promotes genomic integrity by stimulating transcription of mismatch repair genes (Fang et al, 2015). My follow-up studies on another candidate TDP43 reveal Amyotrophical Lateral Sclerosis with TDP43 loss of function is deficient to homology-directed DNA repair by down-regulating homologous recombination genes (Fang et al, in prep).

One or more keywords matched the following items that are connected to Fang, Minggang
Item TypeName
Academic Article MEN1 is a melanoma tumor suppressor that preserves genomic integrity by stimulating transcription of genes that promote homologous recombination-directed DNA repair.
Concept Body Mass Index
Concept Gastrointestinal Tract
Concept DNA Methylation
Concept Tubulin Modulators
Concept DNA-Binding Proteins
Concept RNA, Small Interfering
Concept Independent Living
Concept Lepidoptera
Concept Humans
Concept Incidence
Concept 1-(5-Isoquinolinesulfonyl)-2-Methylpiperazine
Concept Dietary Sucrose
Concept Actins
Concept Mice, Inbred BALB C
Concept Health Knowledge, Attitudes, Practice
Concept Genes, Viral
Concept Proto-Oncogene Proteins B-raf
Concept Nutritive Value
Concept Ubiquitin
Concept Animals
Concept Genetic Complementation Test
Concept Amino Acid Sequence
Concept Moths
Concept Infant, Premature
Concept Cohort Studies
Concept Ubiquitin Thiolesterase
Concept Neoplasms, Experimental
Concept Colorectal Neoplasms
Concept Blotting, Western
Concept Genetic Predisposition to Disease
Concept Protein Interaction Domains and Motifs
Concept DNA (Cytosine-5-)-Methyltransferases
Concept Iron-Binding Proteins
Concept Obesity
Concept Mice
Concept DNA Mismatch Repair
Concept Milk
Concept Microscopy, Confocal
Concept Rad51 Recombinase
Concept Melanoma
Concept Genes, ras
Concept Sequence Deletion
Concept Lymphoma, T-Cell
Concept Mice, Transgenic
Concept TATA-Box Binding Protein
Concept RNA, Messenger
Concept CpG Islands
Concept DNA, Viral
Concept Europe
Concept Adaptor Proteins, Signal Transducing
Concept MafG Transcription Factor
Concept DNA Damage
Concept Survival Analysis
Concept Myeloid-Lymphoid Leukemia Protein
Concept Green Fluorescent Proteins
Concept Spodoptera
Concept Oligonucleotides, Antisense
Concept Friedreich Ataxia
Concept rho-Associated Kinases
Concept Induced Pluripotent Stem Cells
Concept DNA Breaks, Double-Stranded
Concept DNA Virus Infections
Concept Microscopy, Immunoelectron
Concept DNA Replication
Concept Surveys and Questionnaires
Concept Viral Fusion Proteins
Concept Breast Neoplasms
Concept Point Mutation
Concept United States
Concept Gene Deletion
Concept Risk
Concept Promoter Regions, Genetic
Concept Base Sequence
Concept Histone-Lysine N-Methyltransferase
Concept Immunoblotting
Academic Article A KRAS-directed transcriptional silencing pathway that mediates the CpG island methylator phenotype.
Academic Article The BRAF oncoprotein functions through the transcriptional repressor MAFG to mediate the CpG Island Methylator phenotype.
Academic Article The CREB Coactivator CRTC2 Is a Lymphoma Tumor Suppressor that Preserves Genome Integrity through Transcription of DNA Mismatch Repair Genes.
Academic Article Common BRAF(V600E)-directed pathway mediates widespread epigenetic silencing in colorectal cancer and melanoma.
Academic Article Autographa californica multiple nucleopolyhedrovirus core gene ac92 (p33) is required for efficient budded virus production.
Academic Article Autographa californica multiple nucleopolyhedrovirus core gene ac96 encodes a per Os infectivity factor (PIF-4).
Academic Article Deletion of the AcMNPV core gene ac109 results in budded virions that are non-infectious.
Academic Article AcMNPV EXON0 (AC141) which is required for the efficient egress of budded virus nucleocapsids interacts with beta-tubulin.
Academic Article Open reading frame 132 of Helicoverpa armigera nucleopolyhedrovirus encodes a functional per os infectivity factor (PIF-2).
Concept MutL Protein Homolog 1
Concept Physicians, Primary Care
Concept Real-Time Polymerase Chain Reaction
Concept DNA End-Joining Repair
Concept Recombinational DNA Repair
Concept Pediatric Obesity
Academic Article G-rich motifs within phosphorothioate-based antisense oligonucleotides (ASOs) drive activation of FXN expression through indirect effects.
Search Criteria
  • DNA
  • Cytosine
  • 5
  • Methyltransferases