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Development (Cambridge, England)|August 20, 2003
senseless is necessary for the survival of embryonic salivary glands in DrosophilaVidya Chandrasekaran, Steven K Beckendorf
Developmental Biology|June 14, 2005
NETRIN and SLIT guide salivary gland migrationTereza Kolesnikov, Steven K Beckendorf
Developmental Biology|May 22, 2007
18 wheeler regulates apical constriction of salivary gland cells via the Rho-GTPase-signaling pathwayTereza Kolesnikov, Steven K Beckendorf
Development (Cambridge, England)|July 8, 2005
Tec29 controls actin remodeling and endoreplication during invagination of the Drosophila embryonic salivary glandsVidya Chandrasekaran, Steven K Beckendorf
Development (Cambridge, England)|May 18, 2007
Different Wnt signals act through the Frizzled and RYK receptors during Drosophila salivary gland migrationKatherine E Harris, Steven K Beckendorf
Development (Cambridge, England)|October 25, 2002
CSN5/Jab1 mutations affect axis formation in the Drosophila oocyte by activating a meiotic checkpointSergey Doronkin, Inna Djagaeva, Steven K Beckendorf
Developmental Cell|May 10, 2003
The COP9 signalosome promotes degradation of Cyclin E during early Drosophila oogenesisSergey Doronkin, Inna Djagaeva, Steven K Beckendorf
Developmental Biology|June 28, 2005
Src64 is involved in fusome development and karyosome formation during Drosophila oogenesisInna Djagaeva, Sergey Doronkin, Steven K Beckendorf
Mechanisms of Development|April 28, 2007
Two ligands signal through the Drosophila PDGF/VEGF receptor to ensure proper salivary gland positioningKatherine E Harris, Nikolai Schnittke, Steven K Beckendorf
Development (Cambridge, England)|May 21, 2003
Two Pax genes, eye gone and eyeless, act cooperatively in promoting Drosophila eye developmentChuen-Chuen Jang, Ju-Lan Chao, Nikolas Jones, et al.
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