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PMID: 9860975 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Real-time quantitative measurement of autocrine ligand binding indicates that autocrine loops are spatially localized.

Lauffenburger DA, Oehrtman GT, Walker L, Wiley HS

Abstract

Autocrine ligands are important regulators of many normal tissues and have been implicated in a number of disease states, including cancer. However, because by definition autocrine ligands are synthesized, secreted, and bound to cell receptors within an intrinsically self-contained "loop," standard pharmacological approaches cannot be used to investigate relationships between ligand/receptor binding and consequent cellular responses. We demonstrate here a new approach for measurement of autocrine ligand binding to cells, using a microphysiometer assay originally developed for investigating cell responses to exogenous ligands. This technique permits quantitative measurements of autocrine responses on the time scale of receptor binding and internalization, thus allowing investigation of the role of receptor trafficking and dynamics in cellular responses. We used this technique to investigate autocrine signaling through the epidermal growth factor receptor by transforming growth factor alpha (TGFalpha) and found that anti-receptor antibodies are far more effective than anti-ligand antibodies in inhibiting autocrine signaling. This result indicates that autocrine-based signals can operate in a spatially restricted, local manner and thus provide cells with information on their local microenvironment.

MeSH Terms
Animals Cell Line Cell Membrane/metabolism Epidermal Growth Factor/metabolism ErbB Receptors/genetics,metabolism Hydrogen-Ion Concentration Iodine Radioisotopes Kinetics Ligands Mice Radioligand Assay Signal Transduction Time Factors Transforming Growth Factor alpha/pharmacology,physiology
Chemicals
Iodine Radioisotopes Ligands Transforming Growth Factor alpha Epidermal Growth Factor ErbB Receptors
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Lauffenburger D A
Division of Bioengineering & Environmental Health and Center for Biomedical Engineering, Massachusetts Institute of Technology, Cambridge, MA 02139, USA. [email protected]
Oehrtman G T
Walker L
Wiley H S
References (31)
31 references, click to expand
  1. The cytosensor microphysiometer: biological applications of silicon technology.
    Science. 1992 Sep 25;257(5078):1906-12 PMID: 1329199
  2. Anti-epidermal growth factor receptor monoclonal antibodies may inhibit A431 tumor cell proliferation by blocking an autocrine pathway.
    Trans Assoc Am Physicians. 1987;100:173-8 PMID: 3502661
  3. Functional independence of the epidermal growth factor receptor from a domain required for ligand-induced internalization and calcium regulation.
    Cell. 1989 Oct 6;59(1):33-43 PMID: 2790960
  4. Tight control of gene expression in mammalian cells by tetracycline-responsive promoters.
    Proc Natl Acad Sci U S A. 1992 Jun 15;89(12):5547-51 PMID: 1319065
  5. Endocytosis and lysosomal targeting of epidermal growth factor receptors are mediated by distinct sequences independent of the tyrosine kinase domain.
    J Biol Chem. 1995 Mar 3;270(9):4325-33 PMID: 7876194
  6. Autocrine effect of androgen on proliferation of an androgen responsive prostatic carcinoma cell line, LNCAP: role of interleukin-6.
    Endocrinology. 1997 Nov;138(11):5071-4 PMID: 9348243
  7. COOH-terminal-modified interleukin-3 is retained intracellularly and stimulates autocrine growth.
    Science. 1989 Sep 29;245(4925):1493-6 PMID: 2789432
  8. Intracellular trafficking of epidermal growth factor family ligands is directly influenced by the pH sensitivity of the receptor/ligand interaction.
    J Biol Chem. 1995 Mar 3;270(9):4334-40 PMID: 7876195
  9. Tenascin-R is an intrinsic autocrine factor for oligodendrocyte differentiation and promotes cell adhesion by a sulfatide-mediated mechanism.
    J Neurosci. 1997 Jun 15;17(12):4642-51 PMID: 9169525
  10. Tumor cell autocrine motility factor.
    Proc Natl Acad Sci U S A. 1986 May;83(10):3302-6 PMID: 3085086
  11. Expression and functional properties of transforming growth factor alpha and epidermal growth factor during mouse mammary gland ductal morphogenesis.
    Proc Natl Acad Sci U S A. 1991 Jan 1;88(1):276-80 PMID: 1986376
  12. Ligand-induced activation of A431 cell epidermal growth factor receptors occurs primarily by an autocrine pathway that acts upon receptors on the surface rather than intracellularly.
    J Biol Chem. 1991 Apr 25;266(12):7503-8 PMID: 2019581
  13. Autocrine secretion--10 years later.
    Ann Intern Med. 1992 Sep 1;117(5):408-14 PMID: 1503333
  14. Super-CHO-A cell line capable of autocrine growth under fully defined protein-free conditions.
    Cytotechnology. 1996 Jan;22(1-3):139-46 PMID: 22358924
  15. A natural hepatocyte growth factor/scatter factor autocrine loop in myoblast cells and the effect of the constitutive Met kinase activation on myogenic differentiation.
    J Cell Biol. 1997 Jun 2;137(5):1057-68 PMID: 9166406
  16. Interrupting autocrine ligand-receptor binding: comparison between receptor blockers and ligand decoys.
    Biophys J. 1992 Sep;63(3):857-61 PMID: 1330038
  17. Escape of autocrine ligands into extracellular medium: experimental test of theoretical model predictions.
    Biotechnol Bioeng. 1998 Mar 5;57(5):571-82 PMID: 10099236
  18. The role of tyrosine kinase activity in endocytosis, compartmentation, and down-regulation of the epidermal growth factor receptor.
    J Biol Chem. 1991 Jun 15;266(17):11083-94 PMID: 1645724
  19. Probability of autocrine ligand capture by cell-surface receptors: implications for ligand secretion measurements.
    J Comput Biol. 1994 Spring;1(1):15-23 PMID: 8790450
  20. Amphiregulin-dependent proliferation of cultured human keratinocytes: autocrine growth, the effects of exogenous recombinant cytokine, and apparent requirement for heparin-like glycosaminoglycans.
    J Cell Physiol. 1994 Apr;159(1):114-20 PMID: 8138579
  21. The membrane protein CD9/DRAP 27 potentiates the juxtacrine growth factor activity of the membrane-anchored heparin-binding EGF-like growth factor.
    J Cell Biol. 1995 Mar;128(5):929-38 PMID: 7876316
  22. Autocrine nerve growth factor protects human keratinocytes from apoptosis through its high affinity receptor (TRK): a role for BCL-2.
    J Invest Dermatol. 1997 Dec;109(6):757-64 PMID: 9406817
  23. Autocrine stimulation of intracellular PDGF receptors in v-sis-transformed cells.
    Science. 1988 Feb 19;239(4842):914-6 PMID: 2829358
  24. Autocrine secretion and malignant transformation of cells.
    N Engl J Med. 1980 Oct 9;303(15):878-80 PMID: 7412807
  25. Transformation by v-sis occurs by an internal autoactivation mechanism.
    Science. 1989 Sep 29;245(4925):1496-9 PMID: 2551043
  26. Autocrine regulation of neural crest cell development by steel factor.
    Dev Biol. 1997 Apr 1;184(1):61-9 PMID: 9142984
  27. Transient effect of epidermal growth factor on the motility of an immortalized mammary epithelial cell line.
    J Cell Sci. 1993 Nov;106 ( Pt 3):869-78 PMID: 8308069
  28. Autocrine ligand binding to cell receptors. Mathematical analysis of competition by solution "decoys".
    Biophys J. 1992 Feb;61(2):518-29 PMID: 1312367
  29. Epithelial immaturity and multiorgan failure in mice lacking epidermal growth factor receptor.
    Nature. 1995 Jul 27;376(6538):337-41 PMID: 7630400
  30. Quantitative analysis of the endocytic system involved in hormone-induced receptor internalization.
    J Biol Chem. 1990 Sep 15;265(26):15713-23 PMID: 1975591
  31. Autocrine and paracrine regulation of human T cell IL-10 production.
    J Immunol. 1997 Jun 15;158(12):5596-602 PMID: 9190906
Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1998-12-22
Pages
15368-73
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC28049
Subset
IM
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