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Items: 44

1.

Overall survival analysis of EXAM, a phase III trial of cabozantinib in patients with radiographically progressive medullary thyroid carcinoma.

Schlumberger M, Elisei R, Müller S, Schöffski P, Brose M, Shah M, Licitra L, Krajewska J, Kreissl MC, Niederle B, Cohen EEW, Wirth L, Ali H, Clary DO, Yaron Y, Mangeshkar M, Ball D, Nelkin B, Sherman S.

Ann Oncol. 2017 Nov 1;28(11):2813-2819. doi: 10.1093/annonc/mdx479.

2.

Correlative analyses of RET and RAS mutations in a phase 3 trial of cabozantinib in patients with progressive, metastatic medullary thyroid cancer.

Sherman SI, Clary DO, Elisei R, Schlumberger MJ, Cohen EE, Schöffski P, Wirth LJ, Mangeshkar M, Aftab DT, Brose MS.

Cancer. 2016 Dec 15;122(24):3856-3864. doi: 10.1002/cncr.30252. Epub 2016 Aug 15.

3.

Phase I study of XL281 (BMS-908662), a potent oral RAF kinase inhibitor, in patients with advanced solid tumors.

Dickson MA, Gordon MS, Edelman G, Bendell JC, Kudchadkar RR, LoRusso PM, Johnston SH, Clary DO, Schwartz GK.

Invest New Drugs. 2015 Apr;33(2):349-56. doi: 10.1007/s10637-014-0191-5. Epub 2014 Dec 5.

PMID:
25476894
4.

Phase I evaluation of XL019, an oral, potent, and selective JAK2 inhibitor.

Verstovsek S, Tam CS, Wadleigh M, Sokol L, Smith CC, Bui LA, Song C, Clary DO, Olszynski P, Cortes J, Kantarjian H, Shah NP.

Leuk Res. 2014 Mar;38(3):316-22. doi: 10.1016/j.leukres.2013.12.006. Epub 2013 Dec 11.

5.

EXEL-8232, a small-molecule JAK2 inhibitor, effectively treats thrombocytosis and extramedullary hematopoiesis in a murine model of myeloproliferative neoplasm induced by MPLW515L.

Wernig G, Kharas MG, Mullally A, Leeman DS, Okabe R, George T, Clary DO, Gilliland DG.

Leukemia. 2012 Apr;26(4):720-7. doi: 10.1038/leu.2011.261. Epub 2011 Oct 18.

PMID:
22005786
6.

Pharmacological abrogation of S-phase checkpoint enhances the anti-tumor activity of gemcitabine in vivo.

Matthews DJ, Yakes FM, Chen J, Tadano M, Bornheim L, Clary DO, Tai A, Wagner JM, Miller N, Kim YD, Robertson S, Murray L, Karnitz LM.

Cell Cycle. 2007 Jan 1;6(1):104-10. Epub 2007 Jan 7.

PMID:
17245119
7.
8.

Transcriptional-based screens for pathway-specific, high-throughput target discovery in endothelial cells.

Yauch RL, Kadel EE 3rd, Nicholas C, Tetangco S, Clary DO.

J Biomol Screen. 2004 Dec;9(8):704-11.

PMID:
15634797
9.

An automated image capture and quantitation approach to identify proteins affecting tumor cell proliferation.

Bhawe KM, Blake RA, Clary DO, Flanagan PM.

J Biomol Screen. 2004 Apr;9(3):216-22.

PMID:
15140383
10.

Nerve growth factor receptor TrkA is expressed by horizontal and amacrine cells during chicken retinal development.

Karlsson M, Clary DO, Lefcort FB, Reichardt LF, Karten HJ, Hallböök F.

J Comp Neurol. 1998 Oct 26;400(3):408-16.

11.

TrkA immunoreactive neurones in the rat spinal cord.

Michael GJ, Kaya E, Averill S, Rattray M, Clary DO, Priestley JV.

J Comp Neurol. 1997 Sep 1;385(3):441-55.

PMID:
9300770
12.

Neurotrophin-3 promotes the differentiation of muscle spindle afferents in the absence of peripheral targets.

Oakley RA, Lefcort FB, Clary DO, Reichardt LF, Prevette D, Oppenheim RW, Frank E.

J Neurosci. 1997 Jun 1;17(11):4262-74.

13.

Postnatal changes in the expression of the trkA high-affinity NGF receptor in primary sensory neurons.

Bennett DL, Averill S, Clary DO, Priestley JV, McMahon SB.

Eur J Neurosci. 1996 Oct;8(10):2204-8.

PMID:
8921312
15.

Retrograde transport of neurotrophins from the eye to the brain in chick embryos: roles of the p75NTR and trkB receptors.

von Bartheld CS, Williams R, Lefcort F, Clary DO, Reichardt LF, Bothwell M.

J Neurosci. 1996 May 1;16(9):2995-3008.

16.

TrkA activation is sufficient to rescue axotomized cholinergic neurons.

Lucidi-Phillipi CA, Clary DO, Reichardt LF, Gage FH.

Neuron. 1996 Mar;16(3):653-63.

17.

Axonal regeneration and limited functional recovery following hippocampal deafferentation.

Eagle KS, Chalmers GR, Clary DO, Gage FH.

J Comp Neurol. 1995 Dec 18;363(3):377-88.

PMID:
8847406
18.

The carbonic anhydrase domain of receptor tyrosine phosphatase beta is a functional ligand for the axonal cell recognition molecule contactin.

Peles E, Nativ M, Campbell PL, Sakurai T, Martinez R, Lev S, Clary DO, Schilling J, Barnea G, Plowman GD, Grumet M, Schlessinger J.

Cell. 1995 Jul 28;82(2):251-60.

19.

Immunocytochemical localization of trkA receptors in chemically identified subgroups of adult rat sensory neurons.

Averill S, McMahon SB, Clary DO, Reichardt LF, Priestley JV.

Eur J Neurosci. 1995 Jul 1;7(7):1484-94.

20.

Regulation of TrkA and ChAT expression in developing rat basal forebrain: evidence that both exogenous and endogenous NGF regulate differentiation of cholinergic neurons.

Li Y, Holtzman DM, Kromer LF, Kaplan DR, Chua-Couzens J, Clary DO, Knüsel B, Mobley WC.

J Neurosci. 1995 Apr;15(4):2888-905.

21.

TrkA expression in the CNS: evidence for the existence of several novel NGF-responsive CNS neurons.

Holtzman DM, Kilbridge J, Li Y, Cunningham ET Jr, Lenn NJ, Clary DO, Reichardt LF, Mobley WC.

J Neurosci. 1995 Feb;15(2):1567-76.

22.
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24.

NOS induction by NGF in basal forebrain cholinergic neurones: evidence for regulation of brain NOS by a neurotrophin.

Holtzman DM, Kilbridge J, Bredt DS, Black SM, Li Y, Clary DO, Reichardt LF, Mobley WC.

Neurobiol Dis. 1994 Nov;1(1-2):51-60.

PMID:
9216986
25.

TrkA cross-linking mimics neuronal responses to nerve growth factor.

Clary DO, Weskamp G, Austin LR, Reichardt LF.

Mol Biol Cell. 1994 May;5(5):549-63.

26.

SNAP family of NSF attachment proteins includes a brain-specific isoform.

Whiteheart SW, Griff IC, Brunner M, Clary DO, Mayer T, Buhrow SA, Rothman JE.

Nature. 1993 Mar 25;362(6418):353-5.

PMID:
8455721
27.
28.

The mitochondrial genomes of two nematodes, Caenorhabditis elegans and Ascaris suum.

Okimoto R, Macfarlane JL, Clary DO, Wolstenholme DR.

Genetics. 1992 Mar;130(3):471-98.

29.

Purification of soluble N-ethylmaleimide-sensitive fusion attachment proteins from bovine brain microsomes.

Clary DO, Rothman JE.

Methods Enzymol. 1992;219:319-30. No abstract available.

PMID:
1488004
30.
31.
32.

Bizarre tRNAs inferred from DNA sequences of mitochondrial genomes of nematode worms.

Wolstenholme DR, Macfarlane JL, Okimoto R, Clary DO, Wahleithner JA.

Proc Natl Acad Sci U S A. 1987 Mar;84(5):1324-8.

34.

Yeast and mammals utilize similar cytosolic components to drive protein transport through the Golgi complex.

Dunphy WG, Pfeffer SR, Clary DO, Wattenberg BW, Glick BS, Rothman JE.

Proc Natl Acad Sci U S A. 1986 Mar;83(6):1622-6.

35.

The ribosomal RNA genes of Drosophila mitochondrial DNA.

Clary DO, Wolstenholme DR.

Nucleic Acids Res. 1985 Jun 11;13(11):4029-45.

36.

Sequence evolution of Drosophila mitochondrial DNA.

Wolstenholme DR, Clary DO.

Genetics. 1985 Apr;109(4):725-44.

37.
38.
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40.

The Drosophila mitochondrial genome.

Clary DO, Wolstenholme DR.

Oxf Surv Eukaryot Genes. 1984;1:1-35. Review.

PMID:
6400770
41.

Genes for cytochrome c oxidase subunit I, URF2, and three tRNAs in Drosophila mitochondrial DNA.

Clary DO, Wolstenholme DR.

Nucleic Acids Res. 1983 Oct 11;11(19):6859-72.

43.
44.

Drosophila mitochondrial DNA: a novel gene order.

Clary DO, Goddard JM, Martin SC, Fauron CM, Wolstenholme DR.

Nucleic Acids Res. 1982 Nov 11;10(21):6619-37.

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