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Mechanisms of Development|October 9, 2012
Reduced cell number in the hindgut epithelium disrupts hindgut left-right asymmetry in a mutant of pebble, encoding a RhoGEF, in Drosophila embryosMitsutoshi Nakamura, Kenjiroo Matsumoto, Yuta Iwamoto, et al.
Developmental Dynamics : an Official Publication of the American Association of Anatomists|June 4, 2008
Head region of unconventional myosin I family members is responsible for the organ-specificity of their roles in left-right polarity in DrosophilaShunya Hozumi, Reo Maeda, Maiko Taniguchi-Kanai, et al.
Science (New York, N.Y.)|July 19, 2011
Chirality in planar cell shape contributes to left-right asymmetric epithelial morphogenesisKiichiro Taniguchi, Reo Maeda, Tadashi Ando, et al.
Developmental Biology|June 18, 2010
Left-right asymmetric morphogenesis of the anterior midgut depends on the activation of a non-muscle myosin II in DrosophilaTakashi Okumura, Hiroo Fujiwara, Kiichiro Taniguchi, et al.
Nature Materials|October 30, 2019
Stopping transformed cancer cell growth by rigidity sensingBo Yang, Haguy Wolfenson, Vin Yee Chung, et al.
Mechanisms of Development|May 8, 2014
Left-right asymmetry is formed in individual cells by intrinsic cell chiralityRyo Hatori, Tadashi Ando, Takeshi Sasamura, et al.
Cell Reports|March 7, 2025
PIEZO1-dependent mode switch of neuronal migration in heterogeneous microenvironments in the developing brainNaotaka Nakazawa, Gianluca Grenci, Yoshitaka Kameo, et al.
Cell Reports|December 7, 2017
Mechanotransmission and Mechanosensing of Human alpha-Actinin 1Shimin Le, Xian Hu, Mingxi Yao, et al.
Genetics|February 10, 2015
Class I myosins have overlapping and specialized functions in left-right asymmetric development in DrosophilaTakashi Okumura, Takeshi Sasamura, Momoko Inatomi, et al.
Aging Cell|July 21, 2023
Age-associated reduction of nuclear shape dynamics in excitatory neurons of the visual cortexTanita Frey, Tomonari Murakami, Koichiro Maki, et al.
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