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Proceedings of the National Academy of Sciences of the United States of America
|
September 26, 1995
Conservation and function of the transcriptional regulatory protein Runt
M E Pepling, J P Gergen
Development (Cambridge, England)
|
August 7, 1998
Female mouse germ cells form synchronously dividing cysts
M E Pepling, A C Spradling
Developmental Biology
|
June 9, 2001
Mouse ovarian germ cell cysts undergo programmed breakdown to form primordial follicles
M E Pepling, A C Spradling
Trends in Cell Biology
|
June 17, 1999
Germline cysts: a conserved phase of germ cell development?
M E Pepling, M de Cuevas, A C Spradling
Proceedings of the National Academy of Sciences of the United States of America
|
April 15, 1991
Polyadenylylation in copia requires unusually distant upstream sequences
M Kurkulos, J M Weinberg, M E Pepling, et al.
Development (Cambridge, England)
|
June 20, 1998
A Xenopus homologue of aml-1 reveals unexpected patterning mechanisms leading to the formation of embryonic blood
W D Tracey, M E Pepling, M E Horb, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 6) with videos related to
Sort By:
Page
of 1
Proceedings of the National Academy of Sciences of the United States of America
|
September 26, 1995
Conservation and function of the transcriptional regulatory protein Runt
M E Pepling, J P Gergen
Development (Cambridge, England)
|
August 7, 1998
Female mouse germ cells form synchronously dividing cysts
M E Pepling, A C Spradling
Developmental Biology
|
June 9, 2001
Mouse ovarian germ cell cysts undergo programmed breakdown to form primordial follicles
M E Pepling, A C Spradling
Trends in Cell Biology
|
June 17, 1999
Germline cysts: a conserved phase of germ cell development?
M E Pepling, M de Cuevas, A C Spradling
Proceedings of the National Academy of Sciences of the United States of America
|
April 15, 1991
Polyadenylylation in copia requires unusually distant upstream sequences
M Kurkulos, J M Weinberg, M E Pepling, et al.
Development (Cambridge, England)
|
June 20, 1998
A Xenopus homologue of aml-1 reveals unexpected patterning mechanisms leading to the formation of embryonic blood
W D Tracey, M E Pepling, M E Horb, et al.
Page
of 1