User:David Breslow: Difference between revisions

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*[[Special:Emailuser/David Breslow|Email me through OpenWetWare]]
*[[Special:Emailuser/David Breslow|Email me through OpenWetWare]]


I work in Max Nachury's lab at Stanford University.
I work in [http://openwetware.org/wiki/Nachury Max Nachury]'s lab at Stanford University.


==Education==
==Education==
<!--Include info about your educational background-->
<!--Include info about your educational background-->
* 2010, PhD, University of California, San Francisco
* 2010, PhD, University of California, San Francisco.  Advisor: Prof. Jonathan S. Weissman
* 2004, A.B., Harvard University
* 2004, A.B., Harvard University


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==Publications==
==Publications==
<!-- Replace the PubMed ID's ("pmid=#######") below with the PubMed ID's for your publications.  You can add or remove lines as needed -->
<!-- Replace the PubMed ID's ("pmid=#######") below with the PubMed ID's for your publications.  You can add or remove lines as needed -->
<biblio>
 
#Paper1 pmid=21640903
• Roelants F.M.*, <ins>Breslow D.K.</ins>*, Muir A., Bodenmiller B., Weissman J.S., Thorner J.T.  Control of sphingolipid homeostasis: Protein Kinase Ypk1 Regulates Orm1 and Orm2. '''Proc. Natl. Acad. Sci. USA''', in press.
#Paper2 pmid=20965421
 
#Paper2 pmid=20182505
• Seo S., Zhang Q., Bugge K., <ins>Breslow D.K.</ins>, Searby C.C., Nachury M.V., Sheffield V.C. A novel protein LZTFL1 regulates ciliary trafficking of the BBSome and Smoothened. '''PLoS Genetics'''. 7(11): e1002358. [http://www.plosgenetics.org/article/info%3Adoi%2F10.1371%2Fjournal.pgen.1002358 link]
#Paper2 pmid=18622397
 
#Paper2 pmid=16699522
• <ins>Breslow D.K.</ins> and Nachury M.V., (2011). Primary Cilia: How to Keep the Riff-Raff in the Plasma Membrane. '''Current Biology'''. 21(11): R434-436. [http://www.cell.com/current-biology/retrieve/pii/S0960982211004817 link]
</biblio>
 
• Breslow D.K. and Weissman J.S., (2010).  Membranes in Balance: Mechanisms of Sphingolipid Homeostasis. Molecular Cell. 40(2): 267-279. [review article].
<ins>Breslow D.K.</ins> and Weissman J.S., (2010).  Membranes in Balance: Mechanisms of Sphingolipid Homeostasis. '''Molecular Cell'''. 40(2): 267-279. [review article]. [http://www.cell.com/molecular-cell/retrieve/pii/S1097276510007811 link]
 
• <ins>Breslow D.K.</ins>, Collins S.R., Bodenmiller B., Aebersold R., Simons K., Shevchenko A., Ejsing C.S., Weissman J.S., (2010).  Orm Family Proteins Mediate Sphingolipid Homeostasis. '''Nature'''. 463(7284): 1048-1053. [http://www.nature.com/nature/journal/v463/n7284/abs/nature08787.html link]
 
• <ins>Breslow D.K.</ins>*, Cameron D.M.*, Collins S.R., Schuldiner M., Stewart-Ornstein J., Newman H.W., Braun S., Madhani H.D., Krogan N.J., Weissman J.S., (2008).  A Comprehensive Strategy Enabling High-Resolution Functional Analysis of the Yeast Genome. '''Nature Methods'''. 5(8): 711-718. [http://www.nature.com/nmeth/journal/v5/n8/abs/nmeth.1234.html link]
 
• Newman J.R., Ghaemmaghami S., Ihmels J., <ins>Breslow D.K.</ins>, Noble M., DeRisi J.L., Weissman J.S.  (2006).  Single-cell Proteomic Analysis of S. cerevisiae Reveals the Architecture of Biological Noise. '''Nature''', 441(7095): 840-846. [http://www.nature.com/nature/journal/v441/n7095/abs/nature04785.html link]


==Useful links==
==Useful links==
*[[OpenWetWare:Welcome|Introductory tutorial]]
*[[OpenWetWare:Welcome|Introductory tutorial]]
*[[Help|OpenWetWare help pages]]
*[[Help|OpenWetWare help pages]]

Latest revision as of 21:41, 3 November 2011

I am a new member of OpenWetWare!

Contact Info

I work in Max Nachury's lab at Stanford University.

Education

  • 2010, PhD, University of California, San Francisco. Advisor: Prof. Jonathan S. Weissman
  • 2004, A.B., Harvard University

Research interests

I'm investigating the role of primary cilia in signal transduction. In particular, I'm studying how the dynamic entry and exit of proteins from this organelle is coupled to its unique role in organizing signaling pathways.

Publications

• Roelants F.M.*, Breslow D.K.*, Muir A., Bodenmiller B., Weissman J.S., Thorner J.T. Control of sphingolipid homeostasis: Protein Kinase Ypk1 Regulates Orm1 and Orm2. Proc. Natl. Acad. Sci. USA, in press.

• Seo S., Zhang Q., Bugge K., Breslow D.K., Searby C.C., Nachury M.V., Sheffield V.C. A novel protein LZTFL1 regulates ciliary trafficking of the BBSome and Smoothened. PLoS Genetics. 7(11): e1002358. link

Breslow D.K. and Nachury M.V., (2011). Primary Cilia: How to Keep the Riff-Raff in the Plasma Membrane. Current Biology. 21(11): R434-436. link

Breslow D.K. and Weissman J.S., (2010). Membranes in Balance: Mechanisms of Sphingolipid Homeostasis. Molecular Cell. 40(2): 267-279. [review article]. link

Breslow D.K., Collins S.R., Bodenmiller B., Aebersold R., Simons K., Shevchenko A., Ejsing C.S., Weissman J.S., (2010). Orm Family Proteins Mediate Sphingolipid Homeostasis. Nature. 463(7284): 1048-1053. link

Breslow D.K.*, Cameron D.M.*, Collins S.R., Schuldiner M., Stewart-Ornstein J., Newman H.W., Braun S., Madhani H.D., Krogan N.J., Weissman J.S., (2008). A Comprehensive Strategy Enabling High-Resolution Functional Analysis of the Yeast Genome. Nature Methods. 5(8): 711-718. link

• Newman J.R., Ghaemmaghami S., Ihmels J., Breslow D.K., Noble M., DeRisi J.L., Weissman J.S. (2006). Single-cell Proteomic Analysis of S. cerevisiae Reveals the Architecture of Biological Noise. Nature, 441(7095): 840-846. link

Useful links