Neal F. Lue

Affiliations: 
Microbiology and Immunology Weill Cornell Medical College, New York, NY, United States 
Area:
telomere, telomerase, replication
Website:
http://weill.cornell.edu/research/nflue/
Google:
"Neal Lue"
Bio:

http://searchworks.stanford.edu/view/5592658

Mean distance: 8.55
 
SNBCP

Parents

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Roger D. Kornberg grad student 1990 Stanford
 (Analysis of transcription by yeast RNA polymerases i̲n̲ v̲i̲t̲r̲o̲)
James C. Wang post-doc 1996 Harvard
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Publications

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Yu EY, Zahid SS, Ganduri S, et al. (2020) Structurally distinct telomere-binding proteins in Ustilago maydis execute non-overlapping functions in telomere replication, recombination, and protection. Communications Biology. 3: 777
Yu EY, Cheung IY, Feng Y, et al. (2019) Telomere Trimming and DNA Damage as Signatures of High Risk Neuroblastoma. Neoplasia (New York, N.Y.). 21: 689-701
Swapna G, Yu EY, Lue NF. (2018) Single telomere length analysis in , a high-resolution tool for examining fungal telomere length distribution and C-strand 5'-end processing. Microbial Cell (Graz, Austria). 5: 393-403
Hsu M, Lue NF. (2018) The mechanisms of K. lactis Cdc13 in telomere DNA-binding and telomerase regulation. Dna Repair. 61: 37-45
Yu EY, Hsu M, Holloman WK, et al. (2017) Contributions of recombination and repair proteins to telomere maintenance in telomerase-positive and negative Ustilago maydis. Molecular Microbiology
Ganduri S, Lue NF. (2017) STN1-POLA2 interaction provides a basis for primase-pol α stimulation by human STN1. Nucleic Acids Research. 45: 9455-9466
Hsu M, Lue NF. (2017) Analysis of Yeast Telomerase by Primer Extension Assays. Methods in Molecular Biology (Clifton, N.J.). 1587: 83-93
Lue NF, Yu EY. (2016) Telomere recombination pathways: tales of several unhappy marriages. Current Genetics
Yu EY, Pérez-Martín J, Holloman WK, et al. (2015) Mre11 and Blm-Dependent Formation of ALT-Like Telomeres in Ku-Deficient Ustilago maydis. Plos Genetics. 11: e1005570
Steinberg-Neifach O, Lue NF. (2015) Telomere DNA recognition in Saccharomycotina yeast: potential lessons for the co-evolution of ssDNA and dsDNA-binding proteins and their target sites. Frontiers in Genetics. 6: 162
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