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Publication : Intermolecular interactions of thrombospondins drive their accumulation in extracellular matrix.

First Author  Kim DJ Year  2015
Journal  Mol Biol Cell Volume  26
Issue  14 Pages  2640-54
PubMed ID  25995382 Mgi Jnum  J:345770
Mgi Id  MGI:6780569 Doi  10.1091/mbc.E14-05-0996
Citation  Kim DJ, et al. (2015) Intermolecular interactions of thrombospondins drive their accumulation in extracellular matrix. Mol Biol Cell 26(14):2640-54
abstractText  Thrombospondins participate in many aspects of tissue organization in adult tissue homeostasis, and their dysregulation contributes to pathological processes such as fibrosis and tumor progression. The incorporation of thrombospondins into extracellular matrix (ECM) as discrete puncta has been documented in various tissue and cell biological contexts, yet the underlying mechanisms remain poorly understood. We find that collagen fibrils are disorganized in multiple tissues of Thbs1(-/-) mice. In investigating how thrombospondins become retained within ECM and thereby affect ECM organization, we find that accumulation of thrombospondin-1 or thrombospondin-5 puncta within cell-derived ECM is controlled by a novel, conserved, surface-exposed site on the thrombospondin L-type lectin domain. This site acts to recruit thrombospondin molecules into ECM by intermolecular interactions in trans. This mechanism is fibronectin independent, can take place extracellularly, and is demonstrated to be direct in vitro. The trans intermolecular interactions can also be heterotypic-for example, between thrombospondin-1 and thrombospondin-5. These data identify a novel concept of concentration-dependent, intermolecular "matrix trapping" as a conserved mechanism that controls the accumulation and thereby the functionality of thrombospondins in ECM.
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