Mechanism of the pleiotropic effects of the short-ear mutant gene in the mouse.
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Summary
It was shown that the viscera appear to be crowded from the 11-day stage of gestation and that crowding is probably responsible for the abnormalities of the left gonad, the right renal artery, and the ureter, and is possibly a contributing cause of the granulomas of the liver.
- Type
- article
- Published
- 1968-02-01
- Cited by
- 69
- References
- 20
- OpenAlex
- https://openalex.org/W1967051300
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:35631925
Keywords
Biology, Connective tissue, Anatomy, Endocrinology, Internal medicine
References
- Pathologie der Laboratoriumstiere
- The Induction by X-Rays of Hereditary Changes in Mice.
- Inheritance in the House Mouse, the Linkage Relations of Short-Ear, Hairless, and Naked.
- The relative rôle played by the embryonic veins in the development of the mammalian vena cava posterior
- The effect of the coat colour dilution gene on body size in the mouse
- Effects of the short ear gene in the mouse on cartilage formation in healing bone fractures.
- Rodless retina, an ophthalmic mutation in the house mouse, mus musculus
- The development of three manifestations of the short ear gene in the mouse
- Short Ears an Autosomal Mutation in the House Mouse
- Effect of the Short Ear Gene on Number of Ribs and Presacral Vertebrae in the House Mouse
- Hydronephrosis in mouse, rat, and man.
- A defect of the splanchnic mesoderm caused by the mutant gene dominant hemimelia in the mouse.
- Further morphological effects of the short ear gene in the house mouse
- Mitotic rate in mouse liver following intraperitoneal injection of liver, kidney and egg yolk
- XANTHINE OXIDASE ACTIVITY IN REGENERATING LIVER
- Improvements in methods for measuring hydroxyproline: application to human urine.
- BIFURCATED XIPHISTERNUM AND ITS RELATIONSHIP WITH SHORT EARS IN THE HOUSE MOUSE
- LUXOID—A NEW HEREDITARY LEG AND FOOT ABNORMALITYIn the House Mouse
- The growth and differentiation in vitro of tissue from normal and short ear mouse embryos
- Studies on Size Inheritance in Mice.
Cited by
- The molecular control of renal branching morphogenesis: current knowledge and emerging insights.
- Bioinformatic analysis of epithelial:mesenchymal crosstalk during mouse gut development and patterning
- BMP-7 Signaling and its Critical Roles in Kidney Development, the Responses to Renal Injury, and Chronic Kidney Disease.
- Minor variants of skeletal system in highly inbred lines and hybrid combinations of fowl
- Tgf-beta superfamily and mouse craniofacial development: interplay of morphogenetic proteins and receptor signaling controls normal formation of the face.
- An extensive 3' regulatory region controls expression of Bmp5 in specific anatomical structures of the mouse embryo.
- Joint patterning defects caused by single and double mutations in members of the bone morphogenetic protein (BMP) family.
- Differential Expression of Bone Morphogenetic Proteins in the Developing Vestibular and Auditory Sensory Organs
- Evidence from normal expression and targeted misexpression that bone morphogenetic protein (Bmp-4) plays a role in mouse embryonic lung morphogenesis.
- Minimal Phenotype of Mice Homozygous for a Null Mutation in the Forkhead/Winged Helix Gene, Mf2
- The mouse short ear skeletal morphogenesis locus is associated with defects in a bone morphogenetic member of the TGF beta superfamily.
- Bone morphogenetic proteins (BMPs): therapeutic potential in healing bony defects.
- Evidence that autocrine signaling through Bmpr1a regulates the proliferation, survival and morphogenetic behavior of distal lung epithelial cells.
- The family of bone morphogenetic proteins.
- glypican-3 controls cellular responses to Bmp4 in limb patterning and skeletal development.
- An in vivo reporter of BMP signaling in organogenesis reveals targets in the developing kidney
- A compendium of the genetically induced congenital malformations of the house mouse.
- Bone morphogenetic protein signaling in the developing kidney: present and future.
- Ureter growth and differentiation.
- Shaping Skeletal Growth by Modular Regulatory Elements in the Bmp5 Gene
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