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Items: 1 to 50 of 119

1.

Basal constriction during midbrain-hindbrain boundary morphogenesis is mediated by Wnt5b and focal adhesion kinase.

Gutzman JH, Graeden E, Brachmann I, Yamazoe S, Chen JK, Sive H.

Biol Open. 2018 Oct 10. pii: bio.034520. doi: 10.1242/bio.034520. [Epub ahead of print]

2.

A Seed Mismatch Enhances Argonaute2-Catalyzed Cleavage and Partially Rescues Severely Impaired Cleavage Found in Fish.

Chen GR, Sive H, Bartel DP.

Mol Cell. 2017 Dec 21;68(6):1095-1107.e5. doi: 10.1016/j.molcel.2017.11.032.

PMID:
29272705
3.

The 16p11.2 homologs fam57ba and doc2a generate certain brain and body phenotypes.

McCammon JM, Blaker-Lee A, Chen X, Sive H.

Hum Mol Genet. 2017 Oct 1;26(19):3699-3712. doi: 10.1093/hmg/ddx255.

4.

Mouth development.

Chen J, Jacox LA, Saldanha F, Sive H.

Wiley Interdiscip Rev Dev Biol. 2017 Sep;6(5). doi: 10.1002/wdev.275. Epub 2017 May 17. Review.

5.

Validation of Protein Knockout in Mutant Zebrafish Lines Using In Vitro Translation Assays.

Carter BS, Cortés-Campos C, Chen X, McCammon JM, Sive HL.

Zebrafish. 2017 Feb;14(1):73-76. doi: 10.1089/zeb.2016.1326. Epub 2016 Aug 22.

PMID:
27548568
6.

Formation of a "Pre-mouth Array" from the Extreme Anterior Domain Is Directed by Neural Crest and Wnt/PCP Signaling.

Jacox L, Chen J, Rothman A, Lathrop-Marshall H, Sive H.

Cell Rep. 2016 Aug 2;16(5):1445-1455. doi: 10.1016/j.celrep.2016.06.073. Epub 2016 Jul 14.

7.

Directional cerebrospinal fluid movement between brain ventricles in larval zebrafish.

Fame RM, Chang JT, Hong A, Aponte-Santiago NA, Sive H.

Fluids Barriers CNS. 2016 Jun 21;13(1):11. doi: 10.1186/s12987-016-0036-z.

8.

Challenges in understanding psychiatric disorders and developing therapeutics: a role for zebrafish.

McCammon JM, Sive H.

Dis Model Mech. 2015 Jul 1;8(7):647-56. doi: 10.1242/dmm.019620. Review.

9.

Addressing the Genetics of Human Mental Health Disorders in Model Organisms.

McCammon JM, Sive H.

Annu Rev Genomics Hum Genet. 2015;16:173-97. doi: 10.1146/annurev-genom-090314-050048. Epub 2015 May 15. Review.

PMID:
26002061
10.

Zebrafish cerebrospinal fluid mediates cell survival through a retinoid signaling pathway.

Chang JT, Lehtinen MK, Sive H.

Dev Neurobiol. 2016 Jan;76(1):75-92. doi: 10.1002/dneu.22300. Epub 2015 Jun 8.

11.

The extreme anterior domain is an essential craniofacial organizer acting through Kinin-Kallikrein signaling.

Jacox L, Sindelka R, Chen J, Rothman A, Dickinson A, Sive H.

Cell Rep. 2014 Jul 24;8(2):596-609. doi: 10.1016/j.celrep.2014.06.026. Epub 2014 Jul 17.

12.

Facial transplants in Xenopus laevis embryos.

Jacox LA, Dickinson AJ, Sive H.

J Vis Exp. 2014 Mar 26;(85). doi: 10.3791/50697.

13.

Poly(A)-tail profiling reveals an embryonic switch in translational control.

Subtelny AO, Eichhorn SW, Chen GR, Sive H, Bartel DP.

Nature. 2014 Apr 3;508(7494):66-71. doi: 10.1038/nature13007. Epub 2014 Jan 29.

14.

Education: online on-ramps.

Sive H, Sarma S.

Nature. 2013 Jul 18;499(7458):277-8. doi: 10.1038/499277a. No abstract available.

PMID:
23868246
15.

Manual drainage of the zebrafish embryonic brain ventricles.

Chang JT, Sive H.

J Vis Exp. 2012 Dec 16;(70):e4243. doi: 10.3791/4243.

16.

An assay for permeability of the zebrafish embryonic neuroepithelium.

Chang JT, Sive H.

J Vis Exp. 2012 Oct 24;(68):e4242. doi: 10.3791/4242.

17.

Efficient shRNA-mediated inhibition of gene expression in zebrafish.

De Rienzo G, Gutzman JH, Sive H.

Zebrafish. 2012 Sep;9(3):97-107. doi: 10.1089/zeb.2012.0770. Epub 2012 Jul 12.

18.

Extensive alternative polyadenylation during zebrafish development.

Ulitsky I, Shkumatava A, Jan CH, Subtelny AO, Koppstein D, Bell GW, Sive H, Bartel DP.

Genome Res. 2012 Oct;22(10):2054-66. doi: 10.1101/gr.139733.112. Epub 2012 Jun 21.

19.

Multiple roles for the Na,K-ATPase subunits, Atp1a1 and Fxyd1, during brain ventricle development.

Chang JT, Lowery LA, Sive H.

Dev Biol. 2012 Aug 15;368(2):312-22. doi: 10.1016/j.ydbio.2012.05.034. Epub 2012 Jun 7.

20.

Zebrafish homologs of genes within 16p11.2, a genomic region associated with brain disorders, are active during brain development, and include two deletion dosage sensor genes.

Blaker-Lee A, Gupta S, McCammon JM, De Rienzo G, Sive H.

Dis Model Mech. 2012 Nov;5(6):834-51. doi: 10.1242/dmm.009944. Epub 2012 May 1.

21.

Conserved function of lincRNAs in vertebrate embryonic development despite rapid sequence evolution.

Ulitsky I, Shkumatava A, Jan CH, Sive H, Bartel DP.

Cell. 2011 Dec 23;147(7):1537-50. doi: 10.1016/j.cell.2011.11.055. Erratum in: Cell. 2012 Oct 26;151(3):684-6.

22.

Isolation of DNA from red blood cells in Xenopus.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2012 Jan 1;2012(1):129-32. doi: 10.1101/pdb.prot067462.

PMID:
22194257
23.

Common DISC1 polymorphisms disrupt Wnt/GSK3β signaling and brain development.

Singh KK, De Rienzo G, Drane L, Mao Y, Flood Z, Madison J, Ferreira M, Bergen S, King C, Sklar P, Sive H, Tsai LH.

Neuron. 2011 Nov 17;72(4):545-58. doi: 10.1016/j.neuron.2011.09.030.

24.

Disc1 regulates both β-catenin-mediated and noncanonical Wnt signaling during vertebrate embryogenesis.

De Rienzo G, Bishop JA, Mao Y, Pan L, Ma TP, Moens CB, Tsai LH, Sive H.

FASEB J. 2011 Dec;25(12):4184-97. doi: 10.1096/fj.11-186239. Epub 2011 Aug 22.

25.

Keeping two animal systems in one lab - a frog plus fish case study.

Sive H.

Methods Mol Biol. 2011;770:571-8. doi: 10.1007/978-1-61779-210-6_23.

PMID:
21805281
26.

'Model' or 'tool'? New definitions for translational research.

Sive H.

Dis Model Mech. 2011 Mar;4(2):137-8. doi: 10.1242/dmm.007666.

27.

Microinjection of RNA and preparation of secreted proteins from Xenopus oocytes.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2010 Dec 1;2010(12):pdb.prot5538. doi: 10.1101/pdb.prot5538.

PMID:
21123425
28.

Calibration of the injection volume for microinjection of Xenopus oocytes and embryos.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2010 Dec 1;2010(12):pdb.prot5537. doi: 10.1101/pdb.prot5537.

PMID:
21123424
29.

Microinjection of Xenopus oocytes.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2010 Dec 1;2010(12):pdb.prot5536. doi: 10.1101/pdb.prot5536.

PMID:
21123423
30.

Defolliculation of Xenopus oocytes.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2010 Dec 1;2010(12):pdb.prot5535. doi: 10.1101/pdb.prot5535.

PMID:
21123422
31.

Isolation of Xenopus oocytes.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2010 Dec 1;2010(12):pdb.prot5534. doi: 10.1101/pdb.prot5534.

PMID:
21123421
32.

Microinjection of Xenopus embryos.

Sive HL, Grainger RM, Harland RM.

Cold Spring Harb Protoc. 2010 Dec 1;2010(12):pdb.ip81. doi: 10.1101/pdb.ip81.

PMID:
21123415
34.

Understanding the role of DISC1 in psychiatric disease and during normal development.

Brandon NJ, Millar JK, Korth C, Sive H, Singh KK, Sawa A.

J Neurosci. 2009 Oct 14;29(41):12768-75. doi: 10.1523/JNEUROSCI.3355-09.2009. Review.

35.

Zebrafish brain ventricle injection.

Gutzman JH, Sive H.

J Vis Exp. 2009 Apr 6;(26). pii: 1218. doi: 10.3791/1218.

36.

Live imaging of the zebrafish embryonic brain by confocal microscopy.

Graeden E, Sive H.

J Vis Exp. 2009 Apr 1;(26). pii: 1217. doi: 10.3791/1217.

37.

Totally tubular: the mystery behind function and origin of the brain ventricular system.

Lowery LA, Sive H.

Bioessays. 2009 Apr;31(4):446-58. doi: 10.1002/bies.200800207. Review.

38.

Coherent but overlapping expression of microRNAs and their targets during vertebrate development.

Shkumatava A, Stark A, Sive H, Bartel DP.

Genes Dev. 2009 Feb 15;23(4):466-81. doi: 10.1101/gad.1745709.

39.

The Wnt antagonists Frzb-1 and Crescent locally regulate basement membrane dissolution in the developing primary mouth.

Dickinson AJ, Sive HL.

Development. 2009 Apr;136(7):1071-81. doi: 10.1242/dev.032912. Epub 2009 Feb 18.

40.

Characterization and classification of zebrafish brain morphology mutants.

Lowery LA, De Rienzo G, Gutzman JH, Sive H.

Anat Rec (Hoboken). 2009 Jan;292(1):94-106. doi: 10.1002/ar.20768.

41.

Formation of the zebrafish midbrain-hindbrain boundary constriction requires laminin-dependent basal constriction.

Gutzman JH, Graeden EG, Lowery LA, Holley HS, Sive H.

Mech Dev. 2008 Nov-Dec;125(11-12):974-83. doi: 10.1016/j.mod.2008.07.004. Epub 2008 Jul 18.

42.

Investigator profile. An interview with Hazel Sive, Ph.D. Interview by Vicki Glaser.

Sive H.

Zebrafish. 2006;3(4):409-13. doi: 10.1089/zeb.2006.3.409.

PMID:
18377221
43.

PCR-based subtractive cDNA cloning.

Patel M, Sive H.

Curr Protoc Mol Biol. 2001 Aug;Chapter 25:Unit 25B.2. doi: 10.1002/0471142727.mb25b02s55.

PMID:
18265215
44.

Positioning the extreme anterior in Xenopus: cement gland, primary mouth and anterior pituitary.

Dickinson A, Sive H.

Semin Cell Dev Biol. 2007 Aug;18(4):525-33. Epub 2007 Apr 19. Review.

PMID:
17509913
45.

Whitesnake/sfpq is required for cell survival and neuronal development in the zebrafish.

Lowery LA, Rubin J, Sive H.

Dev Dyn. 2007 May;236(5):1347-57. Erratum in: Dev Dyn. 2008 Mar;237(3):859.

46.

Synthesis and purification of digoxigenin-labeled RNA probes for in situ hybridization.

Sive HL, Grainger RM, Harland RM.

CSH Protoc. 2007 Aug 1;2007:pdb.prot4778. doi: 10.1101/pdb.prot4778.

PMID:
21357143
47.

Baskets for in situ hybridization and immunohistochemistry.

Sive HL, Grainger RM, Harland RM.

CSH Protoc. 2007 Aug 1;2007:pdb.prot4777. doi: 10.1101/pdb.prot4777.

PMID:
21357142
48.

Microdissection: Explant and Transplant Assays in Xenopus laevis.

Sive HL, Grainger RM, Harland RM.

CSH Protoc. 2007 Jun 1;2007:pdb.top10. doi: 10.1101/pdb.top10.

PMID:
21357111
49.

Cortical Isolation from Xenopus laevis Oocytes and Eggs.

Sive HL, Grainger RM, Harland RM.

CSH Protoc. 2007 Jun 1;2007:pdb.prot4753. doi: 10.1101/pdb.prot4753.

PMID:
21357101
50.

Dissection of Tightly Adhering Xenopus laevis Tissues by Trypsin Treatment.

Sive HL, Grainger RM, Harland RM.

CSH Protoc. 2007 Jun 1;2007:pdb.prot4752. doi: 10.1101/pdb.prot4752.

PMID:
21357100

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