Michael David Yoder

    • 102 Citations
    • 4 h-Index
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    Fingerprint Dive into the research topics where Michael David Yoder is active. These topic labels come from the works of this person. Together they form a unique fingerprint.

    • 7 Similar Profiles
    Morphogenesis Medicine & Life Sciences
    Embryonic Structures Medicine & Life Sciences
    Cell Adhesion Medicine & Life Sciences
    Erythroid Precursor Cells Medicine & Life Sciences
    Xenopus Medicine & Life Sciences
    Cell adhesion Chemical Compounds
    Mesoderm Medicine & Life Sciences
    Notochord Medicine & Life Sciences

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    Research Output 2001 2019

    • 102 Citations
    • 4 h-Index
    • 5 Article

    GTP binding protein 10 is a member of the OBG family of proteins and is differentially expressed in the early Xenopus embryo

    Jerry, R., Sullivan-Brown, J. & Yoder, M. D., Jun 1 2019, In : Gene Expression Patterns. 32, p. 12-17 6 p.

    Research output: Contribution to journalArticle

    GTP-Binding Proteins
    Embryonic Structures
    7 Citations (Scopus)

    Axial protocadherin (AXPC) regulates cell fate during notochordal morphogenesis

    Yoder, M. D. & Gumbiner, B. M., Nov 1 2011, In : Developmental Dynamics. 240, 11, p. 2495-2504 10 p.

    Research output: Contribution to journalArticle

    Cell Adhesion
    40 Citations (Scopus)

    A protocadherin-cadherin-FLRT3 complex controls cell adhesion and morphogenesis

    Chen, X., Koh, E., Yoder, M. & Gumbiner, B. M., Dec 1 2009, In : PloS one. 4, 12, e8411.

    Research output: Contribution to journalArticle

    transmembrane proteins
    Cell adhesion
    28 Citations (Scopus)

    Shroom4 (Kiaa1202) is an actin-associated protein implicated in cytoskeletal organization

    Yoder, M. D. & Hildebrand, J. D., Jan 1 2007, In : Cell Motility and the Cytoskeleton. 64, 1, p. 49-63 15 p.

    Research output: Contribution to journalArticle

    Myosin Type II
    Neural Tube
    Cell Shape
    Actin Cytoskeleton
    27 Citations (Scopus)

    mDYRK3 kinase is expressed selectively in late erythroid progenitor cells and attenuates colony-forming unit-erythroid development

    Geiger, J. N., Knudsen, G. T., Panek, L., Pandit, A. K., Yoder, M. D., Lord, K. A., Creasy, C. L., Burns, B. M., Gaines, P., Dillon, S. B. & Wojchowski, D. M., Feb 15 2001, In : Blood. 97, 4, p. 901-910 10 p.

    Research output: Contribution to journalArticle

    Erythroid Precursor Cells
    Erythroid Cells
    Stem Cell Factor