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钙质海绵骨针的形态发生:与生长晶体相互作用的特殊蛋白质的作用。

Morphogenesis of calcitic sponge spicules: a role for specialized proteins interacting with growing crystals.

作者信息

Aizenberg J, Hanson J, Ilan M, Leiserowitz L, Koetzle T F, Addadi L, Weiner S

机构信息

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

出版信息

FASEB J. 1995 Feb;9(2):262-8. doi: 10.1096/fasebj.9.2.7781928.

Abstract

Crystals formed in biological tissues often adopt remarkable morphologies that are thought to be determined mainly by the shapes of the confined spaces in which they grow. Another possible way of controlling crystal shape, demonstrated only in vitro, is by means of specialized proteins preferentially interacting with certain crystal faces. In so doing, they reduce the rate of growth in these directions and consequently change the overall crystal shape. In an X-ray diffraction study of the distribution of defects within the lattice of calcite crystals produced by certain sponges, we show that a remarkable correlation exists between the defect patterns or crystal texture and the macroscopic morphology of the spicules. This was observed in two cases in which proteins are present within the spicule crystal, but not in a third case where such intracrystalline proteins are absent. Furthermore, one of the spicules exhibited marked differences in texture even within families of structurally identical crystal planes, demonstrating that the organisms exert exquisite control over the microenvironment in which crystals grow. We conclude that highly controlled intercalation of specialized proteins inside the crystals is an additional means by which organisms control spicule growth.

摘要

生物组织中形成的晶体通常具有显著的形态,人们认为这些形态主要由晶体生长所处受限空间的形状决定。另一种控制晶体形状的可能方式(仅在体外得到证实)是借助与某些晶面优先相互作用的特殊蛋白质。通过这种方式,它们降低了这些方向上的生长速率,从而改变了晶体的整体形状。在一项对某些海绵产生的方解石晶体晶格内缺陷分布的X射线衍射研究中,我们表明缺陷模式或晶体织构与骨针的宏观形态之间存在显著相关性。在两种骨针晶体中存在蛋白质的情况下观察到了这种相关性,但在第三种不存在这种晶内蛋白质的情况下未观察到。此外,其中一根骨针即使在结构相同的晶面族内,其织构也表现出明显差异,这表明生物体对晶体生长的微环境施加了精确控制。我们得出结论,晶体内部特殊蛋白质的高度可控嵌入是生物体控制骨针生长的另一种方式。

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