Literature DB >> 26431896

Mineral-bearing vesicle transport in sea urchin embryos.

Netta Vidavsky1, Admir Masic2, Andreas Schertel3, Steve Weiner1, Lia Addadi4.   

Abstract

Sea urchin embryos sequester calcium from the sea water. This calcium is deposited in a concentrated form in granule bearing vesicles both in the epithelium and in mesenchymal cells. Here we use in vivo calcein labeling and confocal Raman spectroscopy, as well as cryo-FIB-SEM 3D structural reconstructions, to investigate the processes occurring in the internal cavity of the embryo, the blastocoel. We demonstrate that calcein stained granules are also present in the filopodial network within the blastocoel. Simultaneous fluorescence imaging and Raman spectroscopy show that these granules do contain a calcium mineral. By tracking the movements of these granules, we show that the granules in the epithelium and primary mesenchymal cells barely move, but those in the filopodial network move long distances. We could however not detect any unidirectional movement of the filopodial granules. We also show the presence of mineral containing multivesicular vesicles that also move in the filopodial network. We conclude that the filopodial network is an integral part of the mineral transport process, and possibly also for sequestering calcium and other ions. Although much of the sequestered calcium is deposited in the mineralized skeleton, a significant amount is used for other purposes, and this may be temporarily stored in these membrane-delineated intracellular deposits.
Copyright © 2015 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Biomineralization; Cryo-FIB-SEM; Filopodia; Raman spectroscopy; Sea urchin spicule; Vesicle transport

Mesh:

Substances:

Year:  2015        PMID: 26431896     DOI: 10.1016/j.jsb.2015.09.017

Source DB:  PubMed          Journal:  J Struct Biol        ISSN: 1047-8477            Impact factor:   2.867


  14 in total

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4.  Cellular pathways of calcium transport and concentration toward mineral formation in sea urchin larvae.

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5.  Calcium transport into the cells of the sea urchin larva in relation to spicule formation.

Authors:  Netta Vidavsky; Sefi Addadi; Andreas Schertel; David Ben-Ezra; Muki Shpigel; Lia Addadi; Steve Weiner
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Authors:  Netta Vidavsky; Jennie A M R Kunitake; Lara A Estroff
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10.  An Antarctic molluscan biomineralisation tool-kit.

Authors:  Victoria A Sleight; Benjamin Marie; Daniel J Jackson; Elisabeth A Dyrynda; Arul Marie; Melody S Clark
Journal:  Sci Rep       Date:  2016-11-11       Impact factor: 4.379

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