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John C Newman

Publications and source records attributed to John C Newman.

3 recordsLinked to original sources

Cockayne syndrome group B protein (CSB) plays a general role in chromatin maintenance and remodeling.

Cockayne syndrome (CS) is an inherited neurodevelopmental disorder with progeroid features. Although the genes responsible for CS have been implicated in a variety of DNA repair- and transcription-related pathways, the nature of the molecular defect in CS remains mysterious. Using expression microarrays and a unique method for comparative expression analysis called L2L, we sought to define this defect in cells lacking a functional CS group B (CSB) protein, the SWI/SNF-like ATPase responsible for most cases of CS. Remarkably, many of the genes regulated by CSB are also affected by inhibitors of histone deacetylase and DNA methylation, as well as by defects in poly(ADP-ribose)-polymerase function and RNA polymerase II elongation. Moreover, consistent with these microarray expression data, CSB-null cells are sensitive to inhibitors of histone deacetylase or poly(ADP-ribose)-polymerase. Our data indicate a general role for CSB protein in maintenance and remodeling of chromatin structure and suggest that CS is a disease of transcriptional deregulation caused by misexpression of growth-suppressive, inflammatory, and proapoptotic pathways.

Cell Line↗

L2L: a simple tool for discovering the hidden significance in microarray expression data.

L2L is a database consisting of lists of differentially expressed genes compiled from published mammalian microarray studies, along with an easy-to-use application for mining the database with the user's own microarray data. As illustrated by re-analysis of a recent study of diabetic nephropathy, L2L identifies novel biological patterns in microarray data, providing insights into the underlying nature of biological processes and disease. L2L is available online at the authors' website [http://depts.washington.edu/l2l/].

Aging↗

Measuring the immeasurable.

Many bacterial pathogens turn on virulence genes at host body temperature. In the September 6, 2002, issue of Cell, Johansson et al. show that the Listeria monocytogenes thermosensor is an RNA structure in the 5' untranslated region of the mRNA for the virulence-activating transcription factor PrfA. The stem-loop structure blocks translation initiation at 30 degrees C but melts away at 37 degrees C.

5' Untranslated Regions↗