UMass Medical School
GRAPHIC: UMass Medical School logo (6kb) Header Graphic
 
Education
Research
Public Service
Commonwealth Medicine
Library
Careers
Give Online
Campus Modernization
UMass Memorial Health Care
spacer graphic

Section: Rotations
Postdoctoral
Position
Available

Joonsoo Kang, Ph.D.

Academic Role: Associate Professor

Faculty Appointment(s) In:
   Pathology

Other Affiliation(s):
   Center for AIDS Research
   Gastroenterology
   Program in Immunology and Virology

Potential Rotation Projects

1. There are ~20 Sox genes in mammals. Although the prototypic SOX-related proteins, SRY (Sex-determining gene on Y chromosome) and TCF/LEF are reasonably well characterized, very little is known about the relevance of SOX proteins in lymphocyte development and function. We have discovered that some SOX proteins can regulate the WNT/Wingless signaling cascade, a central morphogenetic pathways specifying cell fate in all organisms whose aberrant activity leads to tumourigenesis. Importantly, expression of specific combinations of Sox genes is lymphocyte subset-specific, temporally and spatially. Our results so far strongly indicate that Sox genes are important regulators of multiple lymphocyte subsets, in part by opposing WNT signaling. An impediment to advances in understanding Sox gene functions has been that they are critical for embryonic development and mutations lead to early lethality. We have therefore embarked on generating conditional KO mice of various Sox genes and their cofactors that we postulate are centrally involved in lymphocyte differentiation and function. A few rotation projects are available to analyze these newly derived mouse models, both at the level of cellular and molecular analysis of lymphocyte development and single-cell tracking of specific Sox gene expressing cells in vivo. 

2. Testing small molecule compounds to treat organ-specific T cell-mediated autoimmunity in mice (e.g. Type I Diabetes, colitis and the mouse model of multiple sclerosis).

3. Analysis of mice with novel mutations in TGFb signaling to investigate the role of TGFb in regulating self-destructive T cells.


Office: S3-137
Phone: 508-856-2759
E-mail: Joonsoo.Kang@umassmed.edu
Keywords: Immunology, Gene Expression, Developmental Biology

More on Joonsoo Kang's Research
Research | Publications | Rotations | Biography
View All Sections on One Page

Postdoctoral Position Available

A postdoctoral position is available to study in this laboratory. Contact Dr. Kang for additional details.

spacer graphic
INTRANET spacer graphic top   print   spacer graphic