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Mechanisms of Cellular Communication Through Intercellular Protein Transfer

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Journal J Cell Mol Med
Date 2010 Jan 15
PMID 20070437
Citations 76
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Abstract

In a multicellular system, cellular communication is a must for orchestration and coordination of cellular events. Advent of the latest analytical and imaging tools has allowed us to enhance our understanding of the intercellular communication. An intercellular exchange of proteins or intact membrane patches is a ubiquitous phenomenon, and has been the subject of renewed interest, particularly in the context of immune cells. Recent evidence implicates that intercellular protein transfers, including trogocytosis is an important mechanism of the immune system to modulate immune responses and transferred proteins can also contribute to pathology. It has been demonstrated that intercellular protein transfer can be through the internalization/pathway, dissociation-associated pathway, uptake of exosomes and membrane nanotube formations. Exchange of membrane molecules/antigens between immune cells has been observed for a long time, but the mechanisms and functional consequences of these transfers remain unclear. In this review, we will discuss the important findings concerning intercellular protein transfers, possible mechanisms and highlight their physiological relevance to the immune system, with special reference to T cells such as the stimulatory or suppressive immune responses derived from T cells with acquired dendritic cell membrane molecules.

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References
1.
Cemerski S, Das J, Locasale J, Arnold P, Giurisato E, Markiewicz M . The stimulatory potency of T cell antigens is influenced by the formation of the immunological synapse. Immunity. 2007; 26(3):345-55. PMC: 2763191. DOI: 10.1016/j.immuni.2007.01.013. View

2.
Sprent J . Swapping molecules during cell-cell interactions. Sci STKE. 2005; 2005(273):pe8. DOI: 10.1126/stke.2732005pe8. View

3.
Sloan-Lancaster J, Presley J, Ellenberg J, Yamazaki T, Lippincott-Schwartz J, Samelson L . ZAP-70 association with T cell receptor zeta (TCRzeta): fluorescence imaging of dynamic changes upon cellular stimulation. J Cell Biol. 1998; 143(3):613-24. PMC: 2148150. DOI: 10.1083/jcb.143.3.613. View

4.
Geuze H . The role of endosomes and lysosomes in MHC class II functioning. Immunol Today. 1998; 19(6):282-7. DOI: 10.1016/s0167-5699(98)01269-9. View

5.
Mack M, Kleinschmidt A, Bruhl H, Klier C, Nelson P, Cihak J . Transfer of the chemokine receptor CCR5 between cells by membrane-derived microparticles: a mechanism for cellular human immunodeficiency virus 1 infection. Nat Med. 2000; 6(7):769-75. DOI: 10.1038/77498. View