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海洋生物幼体中钙运输和浓度的细胞途径与矿物质形成。

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

机构信息

Department of Structural Biology, Weizmann Institute of Science, 76100 Rehovot, Israel.

MISTRAL Beamline-Experiments Division, ALBA Synchrotron Light Source, Cerdanyola del Valles, 08290 Barcelona, Spain.

出版信息

Proc Natl Acad Sci U S A. 2020 Dec 8;117(49):30957-30965. doi: 10.1073/pnas.1918195117. Epub 2020 Nov 23.

Abstract

Sea urchin larvae have an endoskeleton consisting of two calcitic spicules. The primary mesenchyme cells (PMCs) are the cells that are responsible for spicule formation. PMCs endocytose sea water from the larval internal body cavity into a network of vacuoles and vesicles, where calcium ions are concentrated until they precipitate in the form of amorphous calcium carbonate (ACC). The mineral is subsequently transferred to the syncytium, where the spicule forms. Using cryo-soft X-ray microscopy we imaged intracellular calcium-containing particles in the PMCs and acquired Ca-L X-ray absorption near-edge spectra of these Ca-rich particles. Using the prepeak/main peak (L'/ L) intensity ratio, which reflects the atomic order in the first Ca coordination shell, we determined the state of the calcium ions in each particle. The concentration of Ca in each of the particles was also determined by the integrated area in the main Ca absorption peak. We observed about 700 Ca-rich particles with order parameters, L'/ L, ranging from solution to hydrated and anhydrous ACC, and with concentrations ranging between 1 and 15 M. We conclude that in each cell the calcium ions exist in a continuum of states. This implies that most, but not all, water is expelled from the particles. This cellular process of calcium concentration may represent a widespread pathway in mineralizing organisms.

摘要

海胆幼虫的内骨骼由两种方解石刺组成。初级间质细胞(PMCs)是负责刺形成的细胞。PMCs 从幼虫的内部体腔中内吞海水进入一个空泡和小泡网络,在那里钙离子被浓缩,直到它们以无定形碳酸钙(ACC)的形式沉淀。然后,矿物质被转移到形成刺的合胞体中。我们使用冷冻软 X 射线显微镜对 PMCs 中的细胞内含钙颗粒进行成像,并获得了这些富含钙的颗粒的 Ca-L X 射线吸收近边缘光谱。使用反映第一个 Ca 配位壳中原子有序性的前峰/主峰(L'/L)强度比,我们确定了每个颗粒中钙离子的状态。每个颗粒中的 Ca 浓度也可以通过主 Ca 吸收峰的积分面积来确定。我们观察到大约 700 个具有从溶液到水合和无水 ACC 的有序参数 L'/L 的富钙颗粒,浓度范围在 1 到 15 M 之间。我们得出结论,在每个细胞中,钙离子存在于连续的状态中。这意味着大多数但不是所有的水都从颗粒中排出。这种钙浓缩的细胞过程可能代表了矿化生物中广泛存在的途径。

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