• 1216 Citations
  • 8 h-Index
20052018
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Fingerprint Dive into the research topics where Georgios Karras is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

  • 6 Similar Profiles
Proliferating Cell Nuclear Antigen Medicine & Life Sciences
DNA Damage Medicine & Life Sciences
Damage tolerance Chemical Compounds
Inborn Genetic Diseases Medicine & Life Sciences
Medical Genetics Medicine & Life Sciences
DNA Chemical Compounds
Ubiquitination Medicine & Life Sciences
Genomic Instability Medicine & Life Sciences

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Research Output 2005 2018

  • 1216 Citations
  • 8 h-Index
  • 9 Article
  • 1 Letter
4 Citations (Scopus)

Role of HSP90 in the Regulation of de Novo Purine Biosynthesis

Pedley, A. M., Karras, G., Zhang, X., Lindquist, S. & Benkovic, S. J., Jun 12 2018, In : Biochemistry. 57, 23, p. 3217-3221 5 p.

Research output: Contribution to journalArticle

Biosynthesis
Molecular Chaperones
Biosynthetic Pathways
Enzymes
Purines
34 Citations (Scopus)

HSP90 Shapes the Consequences of Human Genetic Variation

Karras, G., Yi, S., Sahni, N., Fischer, M., Xie, J., Vidal, M., D'Andrea, A. D., Whitesell, L. & Lindquist, S., Feb 23 2017, In : Cell. 168, 5, p. 856-866.e12

Research output: Contribution to journalArticle

Inborn Genetic Diseases
Medical Genetics
Fanconi Anemia Complementation Group A Protein
Fanconi Anemia
Mutation
3 Citations (Scopus)

Association between age and incidence of posterior capsule rupture during cataract surgery: Cross-sectional study

Tsinopoulos, I. T., Karras, G., Haidich, A. B. & Tsaousis, K. T., Aug 1 2015, In : Journal of Cataract and Refractive Surgery. 41, 8, p. 1783-1784 2 p.

Research output: Contribution to journalLetter

Posterior Capsule of the Lens
Intraocular Lens Implantation
Phacoemulsification
Age Factors
Intraoperative Complications
180 Citations (Scopus)

Widespread macromolecular interaction perturbations in human genetic disorders

Sahni, N., Yi, S., Taipale, M., Fuxman Bass, J. I., Coulombe-Huntington, J., Yang, F., Peng, J., Weile, J., Karras, G., Wang, Y., Kovács, I. A., Kamburov, A., Krykbaeva, I., Lam, M. H., Tucker, G., Khurana, V., Sharma, A., Liu, Y. Y., Yachie, N., Zhong, Q. & 28 others, Shen, Y., Palagi, A., San-Miguel, A., Fan, C., Balcha, D., Dricot, A., Jordan, D. M., Walsh, J. M., Shah, A. A., Yang, X., Stoyanova, A. K., Leighton, A., Calderwood, M. A., Jacob, Y., Cusick, M. E., Salehi-Ashtiani, K., Whitesell, L. J., Sunyaev, S., Berger, B., Barabási, A. L., Charloteaux, B., Hill, D. E., Hao, T., Roth, F. P., Xia, Y., Walhout, A. J. M., Lindquist, S. & Vidal, M., Apr 23 2015, In : Cell. 161, 3, p. 647-660 14 p.

Research output: Contribution to journalArticle

Inborn Genetic Diseases
Medical Genetics
Alleles
Proteins
Protein folding
30 Citations (Scopus)

The ADP-ribosyltransferase PARP10/ARTD10 interacts with proliferating cell nuclear antigen (PCNA) and is required for DNA damage tolerance

Nicolae, C. M., Aho, E. R., Vlahos, A. H. S., Choe, K. N., De, S., Karras, G. & Moldovan, G. L., Jan 1 2014, In : Journal of Biological Chemistry. 289, 19, p. 13627-13637 11 p.

Research output: Contribution to journalArticle

ADP Ribose Transferases
Damage tolerance
Proliferating Cell Nuclear Antigen
DNA Damage
Genomic Instability