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Remote Data Acquisition
ASBMB Today Sept 11, 2011
Experimentation from hundreds
of miles away

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Research Videos Featured in JoVE

Link to December JoVE viedo and article.

1. This December in JoVE
2. JoVE: Molecular Structures of HIV Envelope Glycoproteins

 
Intramural AIDS Research Fellowship 2011
Awarded to Gabriel Frank
 

IAVI Report:
July - August 2011
Artist's rendition of the 3D
surface HIV

Journal: IAVI Report cover July-August 2011

PNAS Cover
July 27, 2010
Artist's rendition of the
surface of dendritic cells

3D image of human melanoma cell

 

Nature Research Highlights
July 23, 2010
HIV Spread in 3D

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NCI in the Journals:
Visualizing High-Efficiency HIV Transfer

 

CCR Connections
High school students help accelerate HIV structural biology research.
CCR Connections, Vol. 4(1), 2010

 
 

IAVI Report:
Andreas von Bubnoff visits with Sriram Subramaniam

Journal: IAVI Report cover

 

NCI Cancer Bulletin:
A Conversation with Dr. Sriram Subramaniam

 

Press Releases: HIV Molecular Entry Claw
1. NIH News
2. NIH Research Matters

 

 

 
 

PUBLICATIONS

 

Ultramicroscopy
1999 January 1, Vol. 75 No. 4 p. 235-250

Cooled CCD detector with tapered fibre optics for recording electron diffraction patterns.

A. R. Faruqi, R. Henderson and S. Subramaniam

The major facilitator superfamily (MFS) represents the largest collection of evolutionarily related members within the class of membrane 'carrier' proteins. OxlT, a representative example of the MFS, is an oxalate-transporting membrane protein in Oxalobacter formigenes . From an electron crystallographic analysis of two-dimensional crystals of OxlT, we have determined the projection structure of this membrane transporter. The projection map at 6 Å resolution indicates the presence of 12 transmembrane helices in each monomer of OxlT, with one set of six helices related to the other set by an approximate internal two-fold axis. The projection map reveals the existence of a central cavity, which we propose to be part of the pathway of oxalate transport. By combining information from the projection map with related biochemical data, we present probable models for the architectural arrangement of transmembrane helices in this protein superfamily.

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