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Cell
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November 30, 1990
Human Hox-4.2 and Drosophila deformed encode similar regulatory specificities in Drosophila embryos and larvae
N McGinnis, M A Kuziora, W McGinnis
Genes & Development
|
February 1, 1991
High-affinity binding sites for the Deformed protein are required for the function of an autoregulatory enhancer of the Deformed gene
M Regulski, S Dessain, N McGinnis, et al.
The EMBO Journal
|
March 1, 1987
Developmental and molecular analysis of Deformed; a homeotic gene controlling Drosophila head development
M Regulski, N McGinnis, R Chadwick, et al.
Development (Cambridge, England)
|
October 21, 1998
A cap 'n' collar protein isoform contains a selective Hox repressor function
N McGinnis, E Ragnhildstveit, A Veraksa, et al.
Frontiers in Psychology
|
November 15, 2021
Remote Research Methods: Considerations for Work With Children
Michelle M Shields, Morgan N McGinnis, Diana Selmeczy
Genetics
|
August 1, 1995
A screen for modifiers of Deformed function in Drosophila
K W Harding, G Gellon, N McGinnis, et al.
Development (Cambridge, England)
|
August 23, 2000
Cap 'n' collar B cooperates with a small Maf subunit to specify pharyngeal development and suppress deformed homeotic function in the Drosophila head
A Veraksa, N McGinnis, X Li, et al.
The EMBO Journal
|
May 15, 1994
Deformed protein binding sites and cofactor binding sites are required for the function of a small segment-specific regulatory element in Drosophila embryos
C Zeng, J Pinsonneault, G Gellon, et al.
Physical Review. E
|
April 16, 2020
Universal energy scaling law for optimally excited nonlinear oscillators
C N McGinnis, D L Holland, Q Su, et al.
Development (Cambridge, England)
|
October 6, 1997
A genetic screen for modifiers of Deformed homeotic function identifies novel genes required for head development
G Gellon, K W Harding, N McGinnis, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 13) with videos related to
Sort By:
Page
of 2
Cell
|
November 30, 1990
Human Hox-4.2 and Drosophila deformed encode similar regulatory specificities in Drosophila embryos and larvae
N McGinnis, M A Kuziora, W McGinnis
Genes & Development
|
February 1, 1991
High-affinity binding sites for the Deformed protein are required for the function of an autoregulatory enhancer of the Deformed gene
M Regulski, S Dessain, N McGinnis, et al.
The EMBO Journal
|
March 1, 1987
Developmental and molecular analysis of Deformed; a homeotic gene controlling Drosophila head development
M Regulski, N McGinnis, R Chadwick, et al.
Development (Cambridge, England)
|
October 21, 1998
A cap 'n' collar protein isoform contains a selective Hox repressor function
N McGinnis, E Ragnhildstveit, A Veraksa, et al.
Frontiers in Psychology
|
November 15, 2021
Remote Research Methods: Considerations for Work With Children
Michelle M Shields, Morgan N McGinnis, Diana Selmeczy
Genetics
|
August 1, 1995
A screen for modifiers of Deformed function in Drosophila
K W Harding, G Gellon, N McGinnis, et al.
Development (Cambridge, England)
|
August 23, 2000
Cap 'n' collar B cooperates with a small Maf subunit to specify pharyngeal development and suppress deformed homeotic function in the Drosophila head
A Veraksa, N McGinnis, X Li, et al.
The EMBO Journal
|
May 15, 1994
Deformed protein binding sites and cofactor binding sites are required for the function of a small segment-specific regulatory element in Drosophila embryos
C Zeng, J Pinsonneault, G Gellon, et al.
Physical Review. E
|
April 16, 2020
Universal energy scaling law for optimally excited nonlinear oscillators
C N McGinnis, D L Holland, Q Su, et al.
Development (Cambridge, England)
|
October 6, 1997
A genetic screen for modifiers of Deformed homeotic function identifies novel genes required for head development
G Gellon, K W Harding, N McGinnis, et al.
Page
of 2