Literature DB >> 10428948

Crystal structure of a tandem pair of fibronectin type III domains from the cytoplasmic tail of integrin alpha6beta4.

J M de Pereda1, G Wiche, R C Liddington.   

Abstract

The integrin alpha6beta4 is an essential component of hemidesmosomes but it also plays a dynamic role in invasive carcinoma cells. The cytoplasmic tail of the beta4 subunit is uniquely large among integrins and includes two pairs of fibronectin type III domains separated by a connecting segment. Here we describe the crystal structure of the first tandem domain pair, a module that is critical for alpha6beta4 function. The structure reveals a novel interdomain interface and candidate protein-binding sites, including a large acidic cleft formed from the surfaces of both domains and a prominent loop that is reminiscent of the RGD integrin-binding loop of fibronectin. This is the first crystal structure of either a hemidesmosome component or an integrin cytoplasmic domain, and it will enable the intracellular functions of alpha6beta4 to be dissected at the atomic level.

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Year:  1999        PMID: 10428948      PMCID: PMC1171486          DOI: 10.1093/emboj/18.15.4087

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  18 in total

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2.  Structural basis of the interaction between integrin alpha6beta4 and plectin at the hemidesmosomes.

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Review 3.  Clinical significance of the integrin α6β4 in human malignancies.

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4.  HCF-1 amino- and carboxy-terminal subunit association through two separate sets of interaction modules: involvement of fibronectin type 3 repeats.

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6.  Specificity of binding of the plectin actin-binding domain to beta4 integrin.

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Review 8.  Interaction of tumour cells with their microenvironment: ion channels and cell adhesion molecules. A focus on pancreatic cancer.

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Review 9.  Advances and perspectives of the architecture of hemidesmosomes: lessons from structural biology.

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10.  Crystal structure of a hemojuvelin-binding fragment of neogenin at 1.8Å.

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