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Development (Cambridge, England)
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December 28, 2020
A primer for generating and using transcriptome data and gene sets
Chad Cockrum, Kiyomi R Kaneshiro, Andreas Rechtsteiner, et al.
Molecules and Cells
|
June 18, 2009
A mutation of cdc-25.1 causes defects in germ cells but not in somatic tissues in C. elegans
Jiyoung Kim, Ah-Reum Lee, Ichiro Kawasaki, et al.
Molecular Biology of the Cell
|
August 26, 2003
KLP-18, a Klp2 kinesin, is required for assembly of acentrosomal meiotic spindles in Caenorhabditis elegans
Christoph Segbert, Rosemarie Barkus, Jim Powers, et al.
Cell Reports
|
October 30, 2012
Antagonism between MES-4 and Polycomb repressive complex 2 promotes appropriate gene expression in C. elegans germ cells
Laura J Gaydos, Andreas Rechtsteiner, Thea A Egelhofer, et al.
Development (Cambridge, England)
|
February 24, 2011
synMuv B proteins antagonize germline fate in the intestine and ensure C. elegans survival
Lisa N Petrella, Wenchao Wang, Caroline A Spike, et al.
Journal of Cell Science
|
April 23, 2009
A germline-specific isoform of eIF4E (IFE-1) is required for efficient translation of stored mRNAs and maturation of both oocytes and sperm
Melissa A Henderson, Elizabeth Cronland, Steve Dunkelbarger, et al.
The Journal of Cell Biology
|
September 29, 2004
Loss of KLP-19 polar ejection force causes misorientation and missegregation of holocentric chromosomes
James Powers, Debra J Rose, Adam Saunders, et al.
Current Biology : CB
|
April 22, 2014
Germ-granule components prevent somatic development in the C. elegans germline
Dustin L Updike, Andrew Kekūpa'a Knutson, Thea A Egelhofer, et al.
Current Biology : CB
|
June 10, 2004
C. elegans PAR proteins function by mobilizing and stabilizing asymmetrically localized protein complexes
Rebecca J Cheeks, Julie C Canman, Willow N Gabriel, et al.
Genetics
|
March 27, 2019
Repression of Germline Genes in <i>Caenorhabditis elegans</i> Somatic Tissues by H3K9 Dimethylation of Their Promoters
Andreas Rechtsteiner, Meghan E Costello, Thea A Egelhofer, et al.
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of 7
Search research articles
Search
Showing results (31-40 of 64) with videos related to
Sort By:
Page
of 7
Development (Cambridge, England)
|
December 28, 2020
A primer for generating and using transcriptome data and gene sets
Chad Cockrum, Kiyomi R Kaneshiro, Andreas Rechtsteiner, et al.
Molecules and Cells
|
June 18, 2009
A mutation of cdc-25.1 causes defects in germ cells but not in somatic tissues in C. elegans
Jiyoung Kim, Ah-Reum Lee, Ichiro Kawasaki, et al.
Molecular Biology of the Cell
|
August 26, 2003
KLP-18, a Klp2 kinesin, is required for assembly of acentrosomal meiotic spindles in Caenorhabditis elegans
Christoph Segbert, Rosemarie Barkus, Jim Powers, et al.
Cell Reports
|
October 30, 2012
Antagonism between MES-4 and Polycomb repressive complex 2 promotes appropriate gene expression in C. elegans germ cells
Laura J Gaydos, Andreas Rechtsteiner, Thea A Egelhofer, et al.
Development (Cambridge, England)
|
February 24, 2011
synMuv B proteins antagonize germline fate in the intestine and ensure C. elegans survival
Lisa N Petrella, Wenchao Wang, Caroline A Spike, et al.
Journal of Cell Science
|
April 23, 2009
A germline-specific isoform of eIF4E (IFE-1) is required for efficient translation of stored mRNAs and maturation of both oocytes and sperm
Melissa A Henderson, Elizabeth Cronland, Steve Dunkelbarger, et al.
The Journal of Cell Biology
|
September 29, 2004
Loss of KLP-19 polar ejection force causes misorientation and missegregation of holocentric chromosomes
James Powers, Debra J Rose, Adam Saunders, et al.
Current Biology : CB
|
April 22, 2014
Germ-granule components prevent somatic development in the C. elegans germline
Dustin L Updike, Andrew Kekūpa'a Knutson, Thea A Egelhofer, et al.
Current Biology : CB
|
June 10, 2004
C. elegans PAR proteins function by mobilizing and stabilizing asymmetrically localized protein complexes
Rebecca J Cheeks, Julie C Canman, Willow N Gabriel, et al.
Genetics
|
March 27, 2019
Repression of Germline Genes in <i>Caenorhabditis elegans</i> Somatic Tissues by H3K9 Dimethylation of Their Promoters
Andreas Rechtsteiner, Meghan E Costello, Thea A Egelhofer, et al.
Page
of 7