User:Hua Jin: Difference between revisions

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*Hua Jin
*Hua Jin
*Stanford University
*University of Illinois at Chicago
*Address 1
*900 S. Ashland Ave
*Address 2
*MBRB 4120
*City, State, Country etc.
*Chicago, IL 60607
*[[Special:Emailuser/Hua Jin|Email me through OpenWetWare]]
*huajin@uic.edu
* I am working in Max Nachury lab at Stanford University
*I joined University of Illinois at Chicago as an Assistant Professor in Sept. 2011
*Check out my lab webpage: http://www.uic.edu/labs/jinlab/


==Education==
==Education==
<!--Include info about your educational background-->
<!--Include info about your educational background-->
* 2011, Postdoc, Stanford University, School of Medicine
* 2007, PhD, University of Michigan-Ann Arbor
* 2007, PhD, University of Michigan-Ann Arbor
* 2001, BS, Peking University, Beijing, China
* 2000, BS, Peking University, Beijing, China


==Publications==
'''Jin H''', White S, Shida T, Schulz S, Aguiar M, Gygi S, Bazan F and Nachury MV. (2010) The Conserved Bardet-Biedl Syndrome Proteins Assemble a Coat that Traffics Membrane Proteins to Cilia. '''Cell''' 141 (7): 1208-1219 '''< ''Cover Story'' >'''


Hu Q, Milenkovic L, '''Jin H''', Scott MP, Nachury MV, Spiliotis ET, Nelson WJ. (2010) A Septin Diffusion Barrier at the Base of the Primary Cilium Maintains Ciliary Membrane Protein Distribution. '''Science''' June 17. [Epub ahead of print]


==Publications==
Nachury MV, Seely ES and '''Jin H'''. (2010) TRAFFICKING TO THE CILIARY MEMBRANE: How to Get Across the Periciliary Diffusion Barrier? '''Annual Review of Cell and Developmental Biology'''
Jin H, Hong Z, Su W, Li J. (2009). “A plant-specific calreticulin is a key retention factor for a defective brassinosteroid receptor in the endoplasmic reticulum.
 
Proc Natl Acad Sci U S A. Jul 13. [Epub ahead of print]
Hong Z, '''Jin H''', Fitchette AC, Xia Y, Monk AM, Faye L, Li J. (2009) Mutations of an {alpha}1,6 Mannosyltransferase Inhibit Endoplasmic Reticulum-Associated Degradation of Defective Brassinosteroid Receptors in Arabidopsis.
'''Plant Cell''' 2009 Dec 18. [Epub ahead of print]


Jin, H., Nachury MV. (2009). “The BBSome.” Curr Biol 19(12): R472-473
'''Jin H''', Hong Z, Su W, Li J. (2009) '''From the Cover''': A plant-specific calreticulin is a key retention factor for a defective brassinosteroid receptor in the endoplasmic reticulum.  '''Proc Natl Acad Sci U S A.''' 106(32):13612-7.  
--- Comment in: * Proc Natl Acad Sci U S A. 2009 Aug 11;106(32):13151-2.


Hong, Z.*, Jin, H.*, Tzfira, T., & Li, J. (2008). "Multiple mechanism-mediated retention of a defective brassinosteroid receptor in the endoplasmic reticulum of Arabidopsis ." The Plant Cell 20: 3418-3429. (*, equal contribution)
'''Jin, H''', Nachury MV. (2009) “The BBSome.” '''Current Biology''' 19(12): R472-473


Jin, H., Yan, Z., Nam, K. H., & Li, J. (2007). "Allele-specific suppression of a defective brassinosteroid receptor reveals a physiological role of UGGT in ER quality control." Mol Cell 26(6): 821-830.  
Hong, Z*, '''Jin, H*''', Tzfira, T, & Li, J. (2008) Multiple mechanism-mediated retention of a defective brassinosteroid receptor in the endoplasmic reticulum of Arabidopsis . '''Plant Cell''' 20: 3418-3429. (*, equal contribution)


Li, J. & Jin, H. (2007). "Regulation of brassinosteroid signaling." Trends Plant Sci 12(1): 37-41.
'''Jin, H''', Yan, Z, Nam, KH, & Li, J. (2007) Allele-specific suppression of a defective brassinosteroid receptor reveals a physiological role of UGGT in ER quality control. '''Molecular Cell''' 26(6): 821-830.  


==Useful links==
Li, J & '''Jin, H'''. (2007) Regulation of brassinosteroid signaling. '''Trends in Plant Science''' 12(1): 37-41.
*[[OpenWetWare:Welcome|Introductory tutorial]]
*[[Help|OpenWetWare help pages]]

Latest revision as of 12:28, 27 November 2011

I am a new member of OpenWetWare!

Contact Info

Hua Jin (an artistic interpretation)
  • Hua Jin
  • University of Illinois at Chicago
  • 900 S. Ashland Ave
  • MBRB 4120
  • Chicago, IL 60607
  • huajin@uic.edu
  • I joined University of Illinois at Chicago as an Assistant Professor in Sept. 2011
  • Check out my lab webpage: http://www.uic.edu/labs/jinlab/

Education

  • 2011, Postdoc, Stanford University, School of Medicine
  • 2007, PhD, University of Michigan-Ann Arbor
  • 2000, BS, Peking University, Beijing, China

Publications

Jin H, White S, Shida T, Schulz S, Aguiar M, Gygi S, Bazan F and Nachury MV. (2010) The Conserved Bardet-Biedl Syndrome Proteins Assemble a Coat that Traffics Membrane Proteins to Cilia. Cell 141 (7): 1208-1219 < Cover Story >

Hu Q, Milenkovic L, Jin H, Scott MP, Nachury MV, Spiliotis ET, Nelson WJ. (2010) A Septin Diffusion Barrier at the Base of the Primary Cilium Maintains Ciliary Membrane Protein Distribution. Science June 17. [Epub ahead of print]

Nachury MV, Seely ES and Jin H. (2010) TRAFFICKING TO THE CILIARY MEMBRANE: How to Get Across the Periciliary Diffusion Barrier? Annual Review of Cell and Developmental Biology

Hong Z, Jin H, Fitchette AC, Xia Y, Monk AM, Faye L, Li J. (2009) Mutations of an {alpha}1,6 Mannosyltransferase Inhibit Endoplasmic Reticulum-Associated Degradation of Defective Brassinosteroid Receptors in Arabidopsis. Plant Cell 2009 Dec 18. [Epub ahead of print]

Jin H, Hong Z, Su W, Li J. (2009) From the Cover: A plant-specific calreticulin is a key retention factor for a defective brassinosteroid receptor in the endoplasmic reticulum. Proc Natl Acad Sci U S A. 106(32):13612-7. --- Comment in: * Proc Natl Acad Sci U S A. 2009 Aug 11;106(32):13151-2.

Jin, H, Nachury MV. (2009) “The BBSome.” Current Biology 19(12): R472-473

Hong, Z*, Jin, H*, Tzfira, T, & Li, J. (2008) Multiple mechanism-mediated retention of a defective brassinosteroid receptor in the endoplasmic reticulum of Arabidopsis . Plant Cell 20: 3418-3429. (*, equal contribution)

Jin, H, Yan, Z, Nam, KH, & Li, J. (2007) Allele-specific suppression of a defective brassinosteroid receptor reveals a physiological role of UGGT in ER quality control. Molecular Cell 26(6): 821-830.

Li, J & Jin, H. (2007) Regulation of brassinosteroid signaling. Trends in Plant Science 12(1): 37-41.