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PMID: 10802657 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Large-scale identification of secreted and membrane-associated gene products using DNA microarrays.

Nature genetics ·Vol. 25 ·No. 1 ·2000-05-00 ·Pages 58-62

Diehn M, Eisen MB, Botstein D, Brown PO

Abstract

Membrane-associated and secreted proteins are an important class of proteins and include receptors, transporters, adhesion molecules, hormones and cytokines. Although algorithms have been developed to recognize potential amino-terminal membrane-targeting signals or transmembrane domains in protein sequences, their accuracy is limited and they require knowledge of the entire coding sequence, including the N terminus, which is not currently available for most of the genes in most organisms, including human. Several experimental approaches for identifying secreted and membrane proteins have been described, but none have taken a comprehensive genomic approach. Furthermore, none of these methods allow easy classification of clones from arrayed cDNA libraries, for which large-scale gene-expression data are now becoming available through the use of DNA microarrays. We describe here a rapid and efficient method for identifying genes that encode secreted or membrane proteins. mRNA species bound to membrane-associated polysomes were separated from other mRNAs by sedimentation equilibrium or sedimentation velocity. The distribution of individual transcripts in the 'membrane-bound' and 'cytosolic' fractions was quantitated for thousands of genes by hybridization to DNA microarrays. Transcripts known to encode secreted or membrane proteins were enriched in the membrane-bound fractions, whereas those known to encode cytoplasmic proteins were enriched in the fractions containing mRNAs associated with free and cytoplasmic ribosomes. On this basis, we identified over 275 human genes and 285 yeast genes that are likely to encode previously unrecognized secreted or membrane proteins.

MeSH Terms
Carbocyanines Cell Membrane/chemistry,genetics,metabolism Humans Jurkat Cells Membrane Proteins/analysis,genetics,metabolism Nuclear Proteins/analysis,genetics,metabolism Nucleic Acid Hybridization Oligonucleotide Array Sequence Analysis/methods Saccharomyces cerevisiae Subcellular Fractions/chemistry,metabolism
Chemicals
Carbocyanines Membrane Proteins Nuclear Proteins cyanine dye 3 cyanine dye 5
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Diehn M
Department of Biochemistry, Stanford University School of Medicine, Stanford, California, USA.
Eisen M B
Botstein D
Brown P O
Article Info
Journal
Nature genetics
Abbr.
Nat Genet
ISSN
1061-4036
Published
2000-05-00
Pages
58-62
Language
English
Region
United States
NLM ID
9216904
Subset
IM
Grants
NCI NIH HHS · CA77097 · United States
NHGRI NIH HHS · HG00983 · United States
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