Publications of H-M Maischein
All genres
Journal Article (21)
1.
Journal Article
144 (11), pp. 2059 - 2069 (2017)
Gain-of-function mutations in Aqp3a influence zebrafish pigment pattern formation through the tissue environment. Development 2.
Journal Article
5 (6), pp. 736 - 744 (2016)
Spermidine, but not spermine, is essential for pigment pattern formation in zebrafish. Biology Open 3.
Journal Article
10, 23 (2015)
The LRR receptor Islr2 is required for retinal axon routing at the vertebrate optic chiasm. Neural Development 4.
Journal Article
12 (4), pp. 694 - 708 (2015)
A Floor-Plate Extracellular Protein-Protein Interaction Screen Identifies Draxin as a Secreted Netrin-1 Antagonist. Cell Reports 5.
Journal Article
3, e05125 (2014)
Gap junctions composed of connexins 41.8 and 39.4 are essential for colour pattern formation in zebrafish. eLife 6.
Journal Article
3 (6), pp. 503 - 509 (2014)
Endothelin signalling in iridophore development and stripe pattern formation of zebrafish. Biology Open 7.
Journal Article
140 (14), pp. 2997 - 3007 (2013)
Iridophores and their interactions with other chromatophores are required for stripe formation in zebrafish. Development 8.
Journal Article
136 (8), pp. 1231 - 1240 (2009)
Lgl2 and E-cadherin act antagonistically to regulate hemidesmosome formation during epidermal development in zebrafish. Development 9.
Journal Article
135 (11), pp. 1935 - 1946 (2008)
The multidomain protein Brpf1 binds histones and is required for Hox gene expression and segmental identity. Development 10.
Journal Article
177 (4), pp. 2463 - 2476 (2006)
Conserved Functions of Ikaros in Vertebrate Lymphocyte Development: Genetic Evidence for Distinct Larval and Adult Phases of T Cell Development and Two Lineages of B Cells in Zebrafish. Journal of Immunology 11.
Journal Article
132 (14), pp. 3255 - 3265 (2005)
Zebrafish penner/lethal giant larvae 2 functions in hemidesmosome formation, maintenance of cellular morphology and growth regulation in the developing basal epidermis. Development 12.
Journal Article
231 (2), pp. 324 - 335 (2004)
Identification of recessive maternal-effect mutations in the zebrafish using a gynogenesis-based method. Developmental Dynamics 13.
Journal Article
7 (5), pp. 491 - 492 (2004)
Towing of sensory axons by their migrating target cells in vivo. Nature Neuroscience 14.
Journal Article
18 (5), pp. 1185 - 1195 (2004)
Genetic Analysis of Adenohypophysis Formation in Zebrafish. Molecular Endocrinology 15.
Journal Article
130 (17), pp. 3907 - 3916 (2003)
The maternal-effect gene futile cycle is essential for pronuclear congression and mitotic spindle assembly in the zebrafish zygote. Development 16.
Journal Article
12 (16), pp. 1405 - 1412 (2002)
Analysis of a Zebrafish VEGF Receptor Mutant Reveals Specific Disruption of Angiogenesis. Current Biology 17.
Journal Article
34 (4), pp. 577 - 588 (2002)
Migration and Function of a Glial Subtype in the Vertebrate Peripheral Nervous System. Neuron 18.
Journal Article
9 (24), pp. 1431 - 1440 (1999)
A mutation in the zebrafish maternal-effect gene nebel affects furrow formation and vasa RNA localization. Current Biology 19.
Journal Article
77 (1), pp. 63 - 74 (1998)
Function of zebrafish beta-catenin and TCF-3 in dorsoventral patterning. Mechanisms of Development 20.
Journal Article
123 (1), pp. 47 - 55 (1996)
The zebrafish epiboly mutants. Development