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1. ZIC2 in Holoprosencephaly

2. Overview of Rodent Zic Genes

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3. Dissecting the Genetic Complexity of Human 6p Deletion Syndromes by Using a Region-Specific, Phenotype-Driven Mouse Screen

8. Functional analysis of transforming growth factor-beta related molecules during early mouse development

19. Disruption of entire Cables2 locus leads to embryonic lethality by diminished Rps21 gene expression and enhanced p53 pathway

21. WNT-responsive SUMOylation of ZIC5 promotes murine neural crest cell development, having multiple effects on transcription.

22. Disruption of entire Cables2 locus leads to embryonic lethality by diminished Rps21 gene expression and enhanced p53 pathway

24. Zic2 is required for neural crest formation and hindbrain patterning during mouse development

26. Induction of the mammalian node requires Arkadia function in the extraembryonic lineages

28. Author response: Disruption of entire Cables2 locus leads to embryonic lethality by diminished Rps21 gene expression and enhanced p53 pathway

30. Equitable Expanded Carrier Screening Needs Indigenous Clinical and Population Genomic Data

33. Upregulation of PKD1L2 provokes a complex neuromuscular disease in the mouse

36. Reappearance of the minor alpha-sarcomeric actins in postnatal muscle

37. Stabilization of Xist RNA mediates initiation of X chromosome inactivation

40. Cables2 Is a Novel Smad2-Regulatory Factor Essential for Early Embryonic Development in Mice

43. Zic2 mutation causes Holoprosencephaly via disruption of NODAL signalling.

45. Organization and evolution of a gene-rich region of the mouse genome: A12.7-Mb region deleted in the Del (13) Svea36H mouse

46. Genetics of Ribosomal Proteins: 'Curiouser and Curiouser'

47. Correction: Mutation of the Diamond-Blackfan Anemia Gene Rps7 in Mouse Results in Morphological and Neuroanatomical Phenotypes

48. Wnt signalling in mouse gastrulation and anterior development: new players in the pathway and signal output

49. Flightless I over-expression impairs skin barrier development, function and recovery following skin blistering

50. Attenuation of flightless I improves wound healing and enhances angiogenesis in a murine model of type 1 diabetes