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Refinado por: Base de dados/Biblioteca: Open Access: PubMed Central remover Nome da Publicação: The Journal Of Biological Chemistry remover
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1
Rational Design of a Parthenolide-based Drug Regimen That Selectively Eradicates Acute Myelogenous Leukemia Stem CellsThis work was supported, in whole or in part, by National Institutes of Health Grants R01 CA158275 (to P. A. C.) and R33 CA183685 (to K. C. H.). This work was also supported by Leukemia and Lymphoma Society Grants TRP 6230-11 and 6133-12 (to C. T. J.). The authors declare that they have no conflicts of interest with the contents of this article. The content is solely the responsi
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Rational Design of a Parthenolide-based Drug Regimen That Selectively Eradicates Acute Myelogenous Leukemia Stem CellsThis work was supported, in whole or in part, by National Institutes of Health Grants R01 CA158275 (to P. A. C.) and R33 CA183685 (to K. C. H.). This work was also supported by Leukemia and Lymphoma Society Grants TRP 6230-11 and 6133-12 (to C. T. J.). The authors declare that they have no conflicts of interest with the contents of this article. The content is solely the responsi

Pei, Shanshan ; Minhajuddin, Mohammad ; D'Alessandro, Angelo ; Nemkov, Travis ; Stevens, Brett M. ; Adane, Biniam ; Khan, Nabilah ; Hagen, Fred K. ; Yadav, Vinod K. ; De, Subhajyoti ; Ashton, John M. ; Hansen, Kirk C. ; Gutman, Jonathan A. ; Pollyea, Daniel A. ; Crooks, Peter A. ; Smith, Clayton ; Jordan, Craig T.

The Journal of biological chemistry, 2016-10, Vol.291 (42), p.21984-22000 [Periódico revisado por pares]

Elsevier Inc

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2
Structure-Activity Analysis of Niclosamide Reveals Potential Role for Cytoplasmic pH in Control of Mammalian Target of Rapamycin Complex 1 (mTORC1) Signaling
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Structure-Activity Analysis of Niclosamide Reveals Potential Role for Cytoplasmic pH in Control of Mammalian Target of Rapamycin Complex 1 (mTORC1) Signaling

Fonseca, Bruno D. ; Diering, Graham H. ; Bidinosti, Michael A. ; Dalal, Kush ; Alain, Tommy ; Balgi, Aruna D. ; Forestieri, Roberto ; Nodwell, Matt ; Rajadurai, Charles V. ; Gunaratnam, Cynthia ; Tee, Andrew R. ; Duong, Franck ; Andersen, Raymond J. ; Orlowski, John ; Numata, Masayuki ; Sonenberg, Nahum ; Roberge, Michel

The Journal of biological chemistry, 2012-05, Vol.287 (21), p.17530-17545 [Periódico revisado por pares]

United States: Elsevier Inc

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3
Targeting Aberrant Glutathione Metabolism to Eradicate Human Acute Myelogenous Leukemia Cells
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Targeting Aberrant Glutathione Metabolism to Eradicate Human Acute Myelogenous Leukemia Cells

Pei, Shanshan ; Minhajuddin, Mohammad ; Callahan, Kevin P. ; Balys, Marlene ; Ashton, John M. ; Neering, Sarah J. ; Lagadinou, Eleni D. ; Corbett, Cheryl ; Ye, Haobin ; Liesveld, Jane L. ; O'Dwyer, Kristen M. ; Li, Zheng ; Shi, Lei ; Greninger, Patricia ; Settleman, Jeffrey ; Benes, Cyril ; Hagen, Fred K. ; Munger, Joshua ; Crooks, Peter A. ; Becker, Michael W. ; Jordan, Craig T.

The Journal of biological chemistry, 2013-11, Vol.288 (47), p.33542-33558 [Periódico revisado por pares]

United States: Elsevier Inc

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4
Functional diversification of the chemical landscapes of yeast Sec14-like phosphatidylinositol transfer protein lipid-binding cavities
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Functional diversification of the chemical landscapes of yeast Sec14-like phosphatidylinositol transfer protein lipid-binding cavities

Tripathi, Ashutosh ; Martinez, Elliott ; Obaidullah, Ahmad J. ; Lete, Marta G. ; Lönnfors, Max ; Khan, Danish ; Soni, Krishnakant G. ; Mousley, Carl J. ; Kellogg, Glen E. ; Bankaitis, Vytas A.

The Journal of biological chemistry, 2019-12, Vol.294 (50), p.19081-19098 [Periódico revisado por pares]

United States: Elsevier Inc

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5
Musashi interaction with poly(A)-binding protein is required for activation of target mRNA translation
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Musashi interaction with poly(A)-binding protein is required for activation of target mRNA translation

Cragle, Chad E. ; MacNicol, Melanie C. ; Byrum, Stephanie D. ; Hardy, Linda L. ; Mackintosh, Samuel G. ; Richardson, William A. ; Gray, Nicola K. ; Childs, Gwen V. ; Tackett, Alan J. ; MacNicol, Angus M.

The Journal of biological chemistry, 2019-07, Vol.294 (28), p.10969-10986 [Periódico revisado por pares]

United States: Elsevier Inc

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6
Phospholipid Transfer Protein Sec14 Is Required for Trafficking from Endosomes and Regulates Distinct trans-Golgi Export Pathways
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Phospholipid Transfer Protein Sec14 Is Required for Trafficking from Endosomes and Regulates Distinct trans-Golgi Export Pathways

Curwin, Amy J. ; Fairn, Gregory D. ; McMaster, Christopher R.

The Journal of biological chemistry, 2009-03, Vol.284 (11), p.7364-7375 [Periódico revisado por pares]

United States: Elsevier Inc

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7
The Yeast Arf GTPase-activating Protein Age1 Is Regulated by Phospholipase D for Post-Golgi Vesicular Transport
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The Yeast Arf GTPase-activating Protein Age1 Is Regulated by Phospholipase D for Post-Golgi Vesicular Transport

Benjamin, Jeremy J.R. ; Poon, Pak P. ; Lewis, Stephen M. ; Auger, Andréanne ; Wong, Tania A. ; Singer, Richard A. ; Johnston, Gerald C.

The Journal of biological chemistry, 2011-02, Vol.286 (7), p.5187-5196 [Periódico revisado por pares]

United States: Elsevier Inc

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8
Anti-oncogenic MicroRNA-203 Induces Senescence by Targeting E2F3 Protein in Human Melanoma Cells
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Anti-oncogenic MicroRNA-203 Induces Senescence by Targeting E2F3 Protein in Human Melanoma Cells

Noguchi, Shunsuke ; Mori, Takashi ; Otsuka, Yusami ; Yamada, Nami ; Yasui, Yuki ; Iwasaki, Junya ; Kumazaki, Minami ; Maruo, Kohji ; Akao, Yukihiro

The Journal of biological chemistry, 2012-04, Vol.287 (15), p.11769-11777 [Periódico revisado por pares]

United States: Elsevier Inc

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9
Glioma-initiating Cells Retain Their Tumorigenicity through Integration of the Sox Axis and Oct4 Protein
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Glioma-initiating Cells Retain Their Tumorigenicity through Integration of the Sox Axis and Oct4 Protein

Ikushima, Hiroaki ; Todo, Tomoki ; Ino, Yasushi ; Takahashi, Masamichi ; Saito, Nobuhito ; Miyazawa, Keiji ; Miyazono, Kohei

The Journal of biological chemistry, 2011-12, Vol.286 (48), p.41434-41441 [Periódico revisado por pares]

United States: Elsevier Inc

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10
Hepatic loss of Lissencephaly 1 (Lis1) induces fatty liver and accelerates liver tumorigenesis in mice
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Hepatic loss of Lissencephaly 1 (Lis1) induces fatty liver and accelerates liver tumorigenesis in mice

Li, Xiaoling ; Liu, Liansheng ; Li, Ran ; Wu, Ailing ; Lu, Jinqiu ; Wu, Qingzhe ; Jia, Junling ; Zhao, Mujun ; Song, Hai

The Journal of biological chemistry, 2018-04, Vol.293 (14), p.5160-5171 [Periódico revisado por pares]

United States: Elsevier Inc

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