George M. Church
Affiliations: | Genetics | Harvard Medical School, Boston, MA, United States |
Area:
Computational GeneticsWebsite:
http://www.fas.harvard.edu/~biophys/George_Church.htmGoogle:
"George M. Church"Bio:
http://www.nasonline.org/member-directory/members/20017037.html
http://arep.med.harvard.edu/
http://arep.med.harvard.edu/gmc/
http://www.chemheritage.org/discover/collections/oral-histories/details/church-george-m.aspx
Mean distance: 8.25 (cluster 21) | S | N | B | C | P |
Cross-listing: Computational Biology Tree - GenetiTree
Parents
Sign in to add mentorSung-Hou Kim | research assistant | 1974 | Duke | |
(B.S.) | ||||
Walter Gilbert | grad student | 1984 | Harvard | |
(Genetic elements within yeast mitochondrial and mouse immunoglobulin introns) | ||||
Gail Martin | post-doc | 1985-1986 | UCSF |
Children
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Publications
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Smidler AL, Marrogi E, Kauffman J, et al. (2024) CRISPR-mediated germline mutagenesis for genetic sterilization of Anopheles gambiae males. Scientific Reports. 14: 4057 |
Stein J, Ericsson M, Nofal M, et al. (2024) Cryosectioning-enabled super-resolution microscopy for studying nuclear architecture at the single protein level. Biorxiv : the Preprint Server For Biology |
Sengupta A, Bandyopadhyay A, Sarkar D, et al. (2024) Genome streamlining to improve performance of a fast-growing cyanobacterium UTEX 2973. Mbio. e0353023 |
Baker D, Church G. (2024) Protein design meets biosecurity. Science (New York, N.Y.). 383: 349 |
Islam M, Yang Y, Simmons AJ, et al. (2023) Temporal recording of mammalian development and precancer. Biorxiv : the Preprint Server For Biology |
Rudolph A, Nyerges A, Chiappino-Pepe A, et al. (2023) Strategies to identify and edit improvements in synthetic genome segments episomally. Nucleic Acids Research |
Smidler AL, Paton DG, Church GM, et al. (2023) CRISPR-mediated germline mutagenesis for genetic sterilization of males. Biorxiv : the Preprint Server For Biology |
Pierson Smela MD, Kramme CC, Fortuna PRJ, et al. (2023) Correction: Directed differentiation of human iPSCs to functional ovarian granulosa-like cells via transcription factor overexpression. Elife. 12 |
Nyerges A, Vinke S, Flynn R, et al. (2023) A swapped genetic code prevents viral infections and gene transfer. Nature |
Pierson Smela MD, Kramme CC, Fortuna PRJ, et al. (2023) Directed differentiation of human iPSCs to functional ovarian granulosa-like cells via transcription factor overexpression. Elife. 12 |