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One or more keywords matched the following properties of Sharma, Sudha
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overview My lab is interested in understanding how mammalian cells maintain genomic stability under normal growth conditions and following DNA damage, and how loss of genetic integrity contributes to cancer, premature aging and other diseases. We utilize a combination of biochemical, molecular and cell biological tools to examine functions of RecQ helicases, a group of highly conserved DNA unwinding enzymes described as caretakers of the genome and implicated in rare genetic diseases. For the past few years, my lab has been investigating investigating RECQ1 (also known as RECQL or RECQL1), the most abundant human RecQ homolog, with a goal to determine common and specialized functions of human RecQ helicases in mechanisms of genome maintenance. The overall focus is on elucidating how impaired function of a specific RecQ protein relates to disease outcomes, including cancer predisposition and premature aging. Following my earlier discovery that the loss of RECQ1 is sufficient to cause genomic instability in mammalian cells, recent work in my lab is investigating in detail the specific roles of RECQ1 in genome maintenance mechanisms of DNA repair and transcriptional regulation, and exploring its broader significance in cellular homeostasis. RECQ1 is frequently upregulated in various cancers and is especially important for cancer cell proliferation. Additionally, germline mutations in RECQ1 significantly increase susceptibility to breast cancer. Thus, we are also investigating RECQ1 as a modifier of cancer development, progression and chemotherapeutic response.
One or more keywords matched the following items that are connected to Sharma, Sudha
Item TypeName
Grant Molecular Analysis of RECQ1 Functions in Genome Maintenance
Academic Article Replication stress induces specific enrichment of RECQ1 at common fragile sites FRA3B and FRA16D.
Academic Article An appraisal of RECQ1 expression in cancer progression.
Academic Article Identification of RECQ1-regulated transcriptome uncovers a role of RECQ1 in regulation of cancer cell migration and invasion.
Concept Aging
Concept Breast Neoplasms
Concept Neoplasms
Concept Colorectal Neoplasms
Academic Article p53 modulates RPA-dependent and RPA-independent WRN helicase activity.
Academic Article Clinicopathological and Functional Significance of RECQL1 Helicase in Sporadic Breast Cancers.
Academic Article DNA helicases as targets for anti-cancer drugs.
Academic Article Analysis of the DNA substrate specificity of the human BACH1 helicase associated with breast cancer.
Academic Article Age-related nonhomologous end joining activity in rat neurons.
Academic Article Tetraplex binding molecules as anti-cancer agents.
Academic Article Transcriptome guided identification of novel functions of RECQ1 helicase.
Academic Article Long Noncoding RNA PURPL Suppresses Basal p53 Levels and Promotes Tumorigenicity in Colorectal Cancer.
Academic Article Keratin 19 regulates cell cycle pathway and sensitivity of breast cancer cells to CDK inhibitors.
Academic Article RECQ1 Helicase in Genomic Stability and Cancer.
Academic Article Nodular sclerosis classical Hodgkin lymphoma grade 2: A diagnostic challenge to the cytopathologists.
Academic Article Genome-Wide Analysis Unveils DNA Helicase RECQ1 as a Regulator of Estrogen Response Pathway in Breast Cancer Cells.
Academic Article Transcriptional regulation by a RecQ helicase.
Academic Article Genome-wide investigations on regulatory functions of RECQ1 helicase.
Academic Article Immune infiltration, aggressive pathology, and poor survival outcomes in RECQL helicase deficient breast cancers.
Search Criteria
  • Cancer
  • Aging
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