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PMID: 3524990 Published · ppublish English Comparative Study Journal Article Research Support, U.S. Gov't, P.H.S. Review

Organization of extracellularly mineralized tissues: a comparative study of biological crystal growth.

CRC critical reviews in biochemistry ·Vol. 20 ·No. 4 ·1986-00-00 ·Pages 365-408

Weiner S

Abstract

Biological mineralization processes are extremely diverse and, to date, it is an act of faith rather than an established principle that organisms utilize common mechanisms for forming crystals. A systematic analysis of the structural organization, as far as possible at the molecular level, of five different extracellularly mineralized tissues is presented to demonstrate that at least these mineralization processes are all part of the same continuum. The degrees of control exercised over crystal nucleation and crystal growth modulation are the basic variables. The five tissues, extracellularly mineralizing algae, radial and granular foraminifera, mammalian bone, mammalian enamel, and mollusk shell nacre, probably span the entire spectrum. Their crystal shapes, sizes, and the relations between the mineral phase and the organic phase, are primarily used to assess probable degrees of control exercised over crystal nucleation and modulation. Three different types of nucleation processes can be recognized: nonspecific, stereochemical, and epitaxial. Modulation of crystal growth after nucleation is either absent, achieved by adsorption of macromolecules onto specific crystal faces, or occurs by the prepositioning of matrix surfaces which interrupt crystal growth. The tissues in which active control is exercised over crystal growth all contain similar types of acidic matrix macromolecules. Significantly, the framework matrix macromolecules are all quite different and hence probably perform some tissue-specific functions. The study shows that there is a common basis for understanding these mineralization processes which is reflected in the nature of the protein-crystal interactions which occur in each tissue.

MeSH Terms
Animals Bone and Bones/metabolism Crystallization Dental Enamel/metabolism Eukaryota/metabolism Extracellular Matrix/metabolism Humans Microscopy, Electron, Scanning Minerals/metabolism Mollusca/metabolism
Chemicals
Minerals
Authors & Affiliations
1 authors, click to expand affiliations / ORCID
Weiner S
Article Info
Journal
CRC critical reviews in biochemistry
Abbr.
CRC Crit Rev Biochem
ISSN
0045-6411
Published
1986-00-00
Pages
365-408
Language
English
Region
United States
NLM ID
0330403
Subset
IM
Grants
NIADDK NIH HHS · AM 27029 · United States
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