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Open AccessJournal ArticleDOI

Epidermal growth factor and transforming growth factor-alpha: differential intracellular routing and processing of ligand-receptor complexes.

Reinhard Ebner, +1 more
- 01 Aug 1991 - 
- Vol. 2, Iss: 8, pp 599-612
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TLDR
TGF-alpha did not induce a complete down-regulation of cell surface receptors, as observed with EGF, which is at least in part responsible for a much sooner recovery of the ligand-binding ability after down- regulation, in the case of TGF- alpha.
Abstract
Two structurally related but different polypeptide growth factors, epidermal growth factor (EGF) and transforming growth factor-alpha (TGF-alpha), exert their activities after interaction with a common cell-surface EGF/TGF-alpha-receptor. Comparative studies of the effects of both ligands have established that TGF-alpha is more potent than EGF in a variety of biological systems. This observation is not explained by differences in affinities of the ligands for the receptor, because the affinity-constants of both factors are very similar. We have compared the intracellular processing of ligand-receptor complexes using either EGF or TGF-alpha in two different cell systems. We found that TGF-alpha dissociates from the EGF/TGF-alpha-receptor at much higher pH than EGF, which may reflect the substantial difference in the calculated isoelectric points. After internalization, the intracellular TGF-alpha is more rapidly cleared than EGF, and a substantial portion of the released TGF-alpha represents undegraded TGF-alpha in contrast to the mostly degraded EGF. In addition, TGF-alpha did not induce a complete down-regulation of cell surface receptors, as observed with EGF, which is at least in part responsible for a much sooner recovery of the ligand-binding ability after down-regulation, in the case of TGF-alpha. These differences in processing of the ligand-receptor complexes may explain why TGF-alpha exerts quantitatively higher activities than EGF.

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Citations
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Epidermal Growth Factor Receptor Cell Proliferation Signaling Pathways.

TL;DR: The molecular mechanisms that regulate EGFR signal transduction are reviewed, including the EGFR structure and its mutations, ligand binding and EGFR dimerization, as well as the signaling pathways that lead to G1 cell cycle progression.
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Derailed endocytosis: an emerging feature of cancer

TL;DR: Pharmaceutical interception of the propensity of tumour cells to derail their signalling and their adhesion receptors may constitute a novel target for cancer therapy.
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Targeting the EGFR signaling pathway in cancer therapy

TL;DR: A further understanding of the system is required to develop an effective anticancer regimen and a combination therapy that comprises an anti-EGFR and a chemotherapeutic/chemopreventive agent will exhibit a multi-pronged approach that can be developed into a highly attractive and specific molecular oriented remedy.
Journal ArticleDOI

TGFα deficiency results in hair follicle and eye abnormalities in targeted and waved-1 mice

TL;DR: To explore the physiological roles of transforming growth factor alpha (TGF alpha), the mouse gene was disrupted by homologous recombination in embryonic stem cells by knocking out the homozygous mutant mice, which displayed pronounced waviness of the whiskers and fur, accompanied by abnormal curvature, disorientation, and misalignment of the hair follicles.
Book ChapterDOI

Biochemical and clinical implications of the ErbB/HER signaling network of growth factor receptors.

TL;DR: The realization that ErbB-2 is a master regulator of a signaling network that drives epithelial cell proliferation identifies this protein as a target for cancer therapy, and various Erb B-2-directed therapeutic approaches, including immunological and genetic therapies, demonstrate promising clinical potential.
References
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Journal ArticleDOI

Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4

TL;DR: Using an improved method of gel electrophoresis, many hitherto unknown proteins have been found in bacteriophage T4 and some of these have been identified with specific gene products.
Journal Article

Cleavage of structural proteins during the assemble of the head of bacterio-phage T4

U. K. Laemmli
- 01 Jan 1970 - 
TL;DR: Using an improved method of gel electrophoresis, many hitherto unknown proteins have been found in bacteriophage T4 and some of these have been identified with specific gene products as mentioned in this paper.
Journal ArticleDOI

Epidermal growth factor

TL;DR: The EGF-MolecularWeight Form of mEGF and the Synthesis of Extracellular Macromolecules, and the Biological Effects of EGF and Urogastrone are presented.
Journal ArticleDOI

Isolation of a Mouse Submaxillary Gland Protein Accelerating Incisor Eruption and Eyelid Opening in the New-born Animal

TL;DR: The isolation of the factor responsible for the earlier development of the incisors and eyelids is reported here, a heat-stable, nondialysable, antigenic protein, whose most distinctive chemical characteristic is the absence of phenylalanine and lysine.
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