Scinovex
article Open AccessTop 1% cited

The tetraspanin superfamily: molecular facilitators

The FASEB Journal · 1997 · Vol. 11(6) · pp. 428–442
Holden T. MaeckerScott C. ToddShoshana Levy

Abstract

A legacy of molecular evolution is the formation of gene families encoding proteins that often serve related functions. One such family gaining recent attention is the tetraspanin superfamily, whose membership has grown to nearly 20 known genes since its discovery in 1990. All encode cell-surface proteins that span the membrane four times, forming two extracellular loops. Some of these genes are found in organisms as primitive as schistosomes and nematodes. Alternately known as the transmembrane 4 (TM4) superfamily or the TM4SF, 4TM, or tetraspan family, we propose here that the name tetraspanins be used for the purpose of standardization. What do the tetraspanins do? Awaiting definitive functional studies, we can only put together pieces of a puzzle that has been built by raising antibodies against these proteins and looking at their distribution, associations, and functions. A brief overview indicates that some tetraspanins are found in virtually all tissues (CD81, CD82, CD9, CD63), whereas others are highly restricted, such as CD37 (B cells) or CD53 (lymphoid and myeloid cells). Many of these proteins have a flair for promiscuous associations with other molecules, including lineage-specific proteins, integrins, and other tetraspanins. In terms of function, they are involved in diverse processes such as cell activation and proliferation, adhesion and motility, differentiation, and cancer. We propose that these functions may all relate to their ability to act as "molecular facilitators," grouping specific cell-surface proteins and thus increasing the formation and stability of functional signaling complexes.

Cell Adhesion Molecules ResearchProteoglycans and glycosaminoglycans researchPlatelet Disorders and TreatmentsTetraspaninSUPERFAMILYChemistryComputational biologyBiologyGeneBiochemistryCell

MeSH terms

AnimalsCell MembraneMultigene FamilyHumansMembrane ProteinsPhylogenyStructure-Activity RelationshipProtein Structure, Tertiary
Citations
927
FWCI
17.63
field-weighted impact
References
128
Percentile
100%
vs. same field & year
Citations per year
Cited by
Function and interactions of integrins
Cell and Tissue Research · 2001 · 1,023 citations
Trafficking and function of the tetraspanin CD63
Experimental Cell Research · 2008 · 748 citations
Matrix metalloproteinases
European Journal of Cancer · 2000 · 537 citations
EGF receptor ligands
Experimental Cell Research · 2003 · 767 citations
References
The selecting: vascular adhesion molecules
The FASEB Journal · 1995 · 931 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.