The cellular basis of platelet secretion: Emerging structure/function relationships

被引:65
作者
Yadav, Shilpi [1 ]
Storrie, Brian [1 ]
机构
[1] Univ Arkansas Med Sci, Dept Physiol & Biophys, Slot 505,4301 W Markham St, Little Rock, AR 72205 USA
关键词
Alpha-granules; microscopy; platelets; platelet release reaction; secretion; HUMAN-BLOOD-PLATELETS; ALPHA-GRANULES; BETA-THROMBOGLOBULIN; RELEASE; LOCALIZATION; EXOCYTOSIS; PROTEINS; FUSION; FIBRINOGEN; MEMBRANE;
D O I
10.1080/09537104.2016.1257786
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Platelet activation has long been known to be accompanied by secretion from at least three types of compartments. These include dense granules, the major source of small molecules; alpha-granules, the major protein storage organelle; and lysosomes, the site of acid hydrolase storage. Despite similar to 60 years of research, there are still many unanswered questions about the cell biology of platelet secretion: for example, how are these secretory organelles organized to support cargo release and what are the key routes of cargo release, granule to plasma membrane or granule to canalicular system. Moreover, in recent years, increasing evidence points to the platelet being organized for secretion of the contents from other organelles, namely the dense tubular system (endoplasmic reticulum) and the Golgi apparatus. Conceivably, protein secretion is a widespread property of the platelet and its organelles. In this review, we concentrate on the cell biology of the alpha-granule and its structure/function relationships. We both review the literature and discuss the wide array of 3-dimensional, high-resolution structural approaches that have emerged in the last few years. These have begun to reveal new and unanticipated outcomes and some of these are discussed. We are hopeful that the next several years will bring rapid advances to this field that will resolve past controversies and be clinically relevant.
引用
收藏
页码:108 / 118
页数:11
相关论文
共 88 条
  • [21] Hohmann-Marriott MF, 2009, NAT METHODS, V6, P729, DOI [10.1038/NMETH.1367, 10.1038/nmeth.1367]
  • [22] HOLMSEN H, 1975, BLOOD, V46, P131
  • [23] Synaptic vesicles are constitutively active fusion machines that function independently of Ca2+
    Holt, Matthew
    Riedel, Dietmar
    Stein, Alexander
    Schuette, Christina
    Jahn, Reinhard
    [J]. CURRENT BIOLOGY, 2008, 18 (10) : 715 - 722
  • [24] Spatiotemporal control of a novel synaptic organizer molecule
    Howell, Kelly
    White, John G.
    Hobert, Oliver
    [J]. NATURE, 2015, 523 (7558) : 83 - +
  • [25] Huang YJ, 2016, BLOOD, V127, P1459, DOI [10.1182/blood-2015-05648550, 10.1182/blood-2015-05-648550]
  • [26] Angiogenesis is regulated by a novel mechanism:: pro- and antiangiogenic proteins are organized into separate platelet α granules and differentially released
    Italiano, Joseph E., Jr.
    Richardson, Jennifer L.
    Patel-Hett, Sunita
    Battinelli, Elisabeth
    Zaslavsky, Alexander
    Short, Sarah
    Ryeom, Sandra
    Folkman, Judah
    Klement, Giannoula L.
    [J]. BLOOD, 2008, 111 (03) : 1227 - 1233
  • [27] Technical Review: Types of Imaging-Direct STORM
    Jensen, Ellen
    Crossman, David
    [J]. ANATOMICAL RECORD-ADVANCES IN INTEGRATIVE ANATOMY AND EVOLUTIONARY BIOLOGY, 2014, 297 (12): : 2227 - 2231
  • [28] JG W., 2013, Platelets, P117
  • [29] B-cell-independent sialylation of IgG
    Jones, Mark B.
    Oswald, Douglas M.
    Joshi, Smita
    Whiteheart, Sidney W.
    Orlando, Ron
    Cobb, Brian A.
    [J]. PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2016, 113 (26) : 7207 - 7212
  • [30] Platelet secretion is kinetically heterogeneous in an agonist-responsive manner
    Jonnalagadda, Deepa
    Izu, Leighton T.
    Whiteheart, Sidney W.
    [J]. BLOOD, 2012, 120 (26) : 5209 - 5216