Functional Proteomics Using Direct Protein Inactivation

Authors: Eustace, B. K.1; Jay, D. G.1

Source: Current Proteomics, Volume 2, Number 2, July 2005 , pp. 103-107(5)

Publisher: Bentham Science Publishers

Key:
Free Content - Free Content
New Content - New Content
Subscribed Content - Subscribed Content
Free Trial Content - Free Trial Content

Abstract:

There is a great need for high-throughput methods to help assign function to the proteins in the cell. In humans, there are sim30,000 genes that may be expressed in any particular cell type resulting in >1 million distinct proteins. However, there are few functional proteomic methods to comprehensively study these proteins. One such method to address the cellular function of proteins is CALI (Chromophore-Assisted Laser Inactivation). CALI uses the specificity of antibodies (or other protein binding reagents) and the energy generated from excited dye molecules to specifically damage proteins. FALI (Fluorophore-Assisted Light Inactivation) is a modification of CALI that allows high-throughput protein disruption with a diffuse light source to inactivate samples simultaneously in multiwell plates. FALI is currently being used with large libraries of monoclonal or recombinant antibodies to identify proteins involved in tumor cell invasion, dispersal, and apoptosis. However, new innovations in light-mediated protein inactivation continue to be developed, and provide novel strategies for proteomics. GFP-CALI (Green Fluorescent Protein) and FlAsH-FALI (Fluorescein-Arsenical Helix) are two examples of such innovations. These methods use genetically encoded fusion proteins to direct lightinduced damage to the protein. So far these methods have been used in hypothesis-driven experiments, but they are readily adaptable to high-throughput proteomic screens. In this review, we will describe the current applications of CALI and FALI, and speculate on the future of direct light-induced protein inactivation for functional proteomics.

Keywords: cali; fali; proteomics; high-throughput screens; functional proteomics; cell-based assays; cancer

Document Type: Review article

DOI: 10.2174/1570164054494208

Affiliations: 1: Tufts University School of Medicine, 136 Harrison Avenue, M & V 709, Boston, MA 02111, USA;

The full text electronic article is available for purchase. You will be able to download the full text electronic article after payment.

$55.10 plus tax

 

OR

Back to top

Key:
Free Content - Free Content
New Content - New Content
Subscribed Content - Subscribed Content
Free Trial Content - Free Trial Content
Page Help Click here for Page Help
Shopping cart
Tools
Sign in






Need to register?
Sign up here
Text size: A | A | A | A