Gilbert Chu
#9,526
Most Influential Person Now
American biochemist
Gilbert Chu's AcademicInfluence.com Rankings
Gilbert Chubiology Degrees
Biology
#752
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#1305
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#408
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Biochemistry
#214
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#269
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#105
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Gilbert Chuphilosophy Degrees
Philosophy
#8569
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#11976
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#1706
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Logic
#7929
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#9864
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#1259
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Biology Philosophy
Why Is Gilbert Chu Influential?
(Suggest an Edit or Addition)According to Wikipedia, Gilbert Chu is an American biochemist. He is a Professor of Medicine and Biochemistry at the Stanford Medical School. Biography Chu graduated from Garden City High School in New York in 1963. He received a B.A. in physics from Princeton University in 1967, a Ph.D. in physics from M.I.T. in 1973, and an M.D. from Harvard Medical School in 1980.
Gilbert Chu's Published Works
Published Works
- Separation of large DNA molecules by contour-clamped homogeneous electric fields. (1986) (1373)
- Expression of the p48 xeroderma pigmentosum gene is p53-dependent and is involved in global genomic repair. (1999) (622)
- Cellular responses to cisplatin. The roles of DNA-binding proteins and DNA repair. (1994) (610)
- UV-Induced Ubiquitylation of XPC Protein Mediated by UV-DDB-Ubiquitin Ligase Complex (2005) (599)
- Xeroderma pigmentosum group E cells lack a nuclear factor that binds to damaged DNA. (1988) (393)
- Synapsis of DNA ends by DNA‐dependent protein kinase (2002) (367)
- Xeroderma pigmentosum p48 gene enhances global genomic repair and suppresses UV-induced mutagenesis. (2000) (357)
- Restoration of X-ray resistance and V(D)J recombination in mutant cells by Ku cDNA. (1994) (353)
- Double Strand Break Repair* (1997) (334)
- DNA-dependent protein kinase: DNA binding and activation in the absence of Ku. (1998) (249)
- Cancer risk after use of recombinant bone morphogenetic protein-2 for spinal arthrodesis. (2013) (230)
- Cernunnos/XLF promotes the ligation of mismatched and noncohesive DNA ends (2007) (207)
- Involvement of the Ku autoantigen in the cellular response to DNA double-strand breaks. (1994) (201)
- Xeroderma pigmentosum complementation group E and UV-damaged DNA-binding protein. (2002) (199)
- p53 Binds and Activates the Xeroderma Pigmentosum DDB2 Gene in Humans but Not Mice (2002) (180)
- A DNA end-binding factor involved in double-strand break repair and V(D)J recombination (1994) (177)
- Contributions of ATM mutations to familial breast and ovarian cancer. (2003) (167)
- p48 Activates a UV-Damaged-DNA Binding Factor and Is Defective in Xeroderma Pigmentosum Group E Cells That Lack Binding Activity (1998) (166)
- Ku86 defines the genetic defect and restores X-ray resistance and V(D)J recombination to complementation group 5 hamster cell mutants (1996) (165)
- Portrait of transcriptional responses to ultraviolet and ionizing radiation in human cells. (2004) (151)
- Cisplatin-resistant cells express increased levels of a factor that recognizes damaged DNA. (1990) (141)
- Crystal structure of human XLF: a twist in nonhomologous DNA end-joining. (2007) (140)
- Structure of DNA‐dependent protein kinase: implications for its regulation by DNA (1999) (128)
- Processing of DNA for nonhomologous end‐joining by cell‐free extract (2005) (122)
- Xeroderma pigmentosum group E binding factor recognizes a broad spectrum of DNA damage. (1994) (116)
- Global analysis of ATM polymorphism reveals significant functional constraint. (2001) (111)
- Activation of DNA-dependent Protein Kinase by Single-stranded DNA Ends* (2000) (111)
- Purification and characterization of a human protein that binds to damaged DNA. (1993) (107)
- DNA-dependent protein kinase is not required for accumulation of p53 or cell cycle arrest after DNA damage. (1997) (90)
- Enhanced detection of the t(14;18) translocation in malignant lymphoma using pulsed-field gel electrophoresis. (1991) (80)
- Xeroderma pigmentosum, Cockayne syndrome and trichothiodystrophy: do the genes explain the diseases? (1996) (79)
- The end-joining reaction in V(D)J recombination. (1997) (75)
- An Information Theoretic, Microfluidic-Based Single Cell Analysis Permits Identification of Subpopulations among Putatively Homogeneous Stem Cells (2011) (70)
- Pulsed-field electrophoresis of megabase-sized DNA (1991) (54)
- Processing of DNA for Nonhomologous End-joining Is Controlled by Kinase Activity and XRCC4/Ligase IV* (2007) (54)
- A novel role for DNA photolyase: binding to DNA damaged by drugs is associated with enhanced cytotoxicity in Saccharomyces cerevisiae. (1994) (54)
- Evidence that xeroderma pigmentosum cells from complementation group E are deficient in a homolog of yeast photolyase (1989) (52)
- Isolation of a cDNA encoding a UV-damaged DNA binding factor defective in xeroderma pigmentosum group E cells. (1996) (51)
- Pulsed field electrophoresis in contour‐clamped homogeneous electric fields for the resolution of DNA by size or topology (1989) (47)
- Failure of Hairpin-Ended and Nicked DNA To Activate DNA-Dependent Protein Kinase: Implications for V(D)J Recombination (1998) (40)
- Pulsed-field gel electrophoresis: Theory and practice (1990) (32)
- DNA cross-linked by cisplatin: a new probe for the DNA repair defect in xeroderma pigmentosum. (1987) (30)
- Interaction between UV-damaged DNA Binding Activity Proteins and the c-Abl Tyrosine Kinase* (2002) (28)
- Bag model for DNA migration during pulsed-field electrophoresis. (1991) (25)
- Complete and Prolonged Response to Immune Checkpoint Blockade in POLE-Mutated Colorectal Cancer. (2019) (24)
- Role of the Ku autoantigen in V(D)J recombination and double-strand break repair. (1996) (16)
- Mechanisms for DNA Double-Strand Break Repair in Eukaryotes (1998) (15)
- Internal sequence analysis of proteins eluted from polyacrylamide gels. (1996) (13)
- Here Comes the Sun: Recognition of UV-Damaged DNA (2008) (13)
- Cooperative Assembly of a Protein-DNA Filament for Nonhomologous End Joining* (2013) (11)
- The use of electrophoretic mobility shift assays to study DNA repair. (1999) (11)
- Assays for nonhomologous end joining in extracts. (2006) (11)
- Separation of large DNA by a variable-angle contour-clamped homogeneous electric field apparatus. (1991) (10)
- Mutation of the ATM Gene is Not Involved in the Pathogenesis of Either Follicle Center Lymphoma or its Transformation to Higher-grade Lymphoma (2002) (9)
- Electrophoretic mobility shift assays for protein-DNA complexes involved in DNA repair. (2012) (8)
- Point-of-care analysis of blood ammonia with a gas-phase sensor. (2020) (8)
- Trichloroacetic acid precipitation by ultracentrifugation to concentrate dilute protein in viscous solution. (1996) (8)
- How cells recognize damaged DNA: clues from xeroderma pigmentosum and yeast. (1990) (5)
- DNA-dependent protein kinase: DNA binding and activation in the absence of Ku (DNA repairyV(D)J recombinationyionizing radiation) (1998) (5)
- Not Mice Gene in Humans but DDB 2 Pigmentosum p 53 Binds and Activates the Xeroderma (2002) (5)
- Global Genomic Repair and p53 in a Dance after DNA Damage (2002) (2)
- Electrophoretic mobility shift assays to study protein binding to damaged DNA. (2006) (2)
- Apparatus for contour-clamped homogeneous electric fields (1990) (2)
- lymphoma using pulsed-field gel electrophoresis Enhanced detection of the t(14;18) translocation in malignant (2011) (1)
- A novel role for DNA photolyase: binding to DNA damaged by drugs is associated with enhanced cytotoxicity in Saccharomyces cerevisiae (1994) (1)
- Targeting Breast Cancer with a Steroid Adapter to Inhibit DNA Repair (2010) (0)
- Feasibility and design of a cloud-based digital platform in patients with advanced cancer. (2019) (0)
- Electrophoresis, which is homogeneous or inhomogeneous electric fields with certain radius used. (1987) (0)
- Electrophoresis using electric fields of a predetermined contour (1989) (0)
- Expression of the p48 xeroderma p53-dependent and is involved in (2016) (0)
- RecombinationImplications for V(D)J To Activate DNA-Dependent Protein Failure of Hairpin-Ended and Nicked DNA (2013) (0)
- Microsoft Word - 2013 manuscript.55.docx (2013) (0)
- Genes Involved in DNA Double-Strand Break Repair: Implications for Breast Cancer. (1996) (0)
- Hereditary Breast and Ovarian Cancer and Poly(ADP-ribose) Polymerase Inhibition (2015) (0)
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What Schools Are Affiliated With Gilbert Chu?
Gilbert Chu is affiliated with the following schools: