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A Novel Acidic Matrix Protein, PfN44, Stabilizes the Magnesium Calcite to Inhibit the Crystallizatio
ISSN号:0021-9258
期刊名称:Journal of Biological Chemistry
时间:2013
页码:2776-2787
相关项目:珠母贝间液对珍珠质形成的分子调控机理
作者:
*Rongqing Zhang|Pan Cong|
同期刊论文项目
珠母贝间液对珍珠质形成的分子调控机理
期刊论文 12
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Ubiquitylation Functions in the Calcium Carbonate Biomineralization in the Extracellular Matrix.
Dual Roles of the Lysine-Rich Matrix Protein (KRMP)-3 in Shell Formation of Pearl Oyster, Pinctada f
Cloning and identification of a YY-1 homolog as a potential transcription factor from Pinctada fucat
In-depth proteomic analysis of shell matrix proteins of Pinctada fucata.
A Novel Acidic Matrix Protein, PfN44Stabilizes the Magnesium Calcite to Inhibit the Crystallization
The Effect of NF-κB Signalling Pathway on Expression and Regulation of Nacrein in Pearl Oyster
Patterns of Expression in the Matrix Proteins Responsible for Nucleation and Growth of Aragonite Cry
Amorphous Calcium Carbonate Precipitation by Cellular Biomineralization in Mantle Cell Cult
The AP-1 transcription factor homolog Pf-AP-1 activates transcription of multiple biomineral protein
Heterogeneous distribution of dye-labelled biomineralizaiton proteins in calcite crystals.