Calcium salts are often present in the center of all types of gallstones. Matrix proteins are known to be essential for biomineralization and may therefore also be important in the formation and growth of gallstones. Other researchers have described an anionic peptide fraction of a biliary lipoprote
Nucleolin is a calcium-binding protein
✍ Scribed by James S.C. Gilchrist; Bernard Abrenica; Patrick J. DiMario; Michael P. Czubryt; Grant N. Pierce
- Publisher
- John Wiley and Sons
- Year
- 2002
- Tongue
- English
- Weight
- 231 KB
- Volume
- 85
- Category
- Article
- ISSN
- 0730-2312
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
We have purified a prominent 110‐kDa protein (p110) from 1.6 M NaCl extracts of rat liver nuclei that appears to bind Ca^2+^. p110 was originally identified by prominent blue staining with ‘Stains‐All’ in sodium dodecyl sulfate–polyacrylamide gels and was observed to specifically bind ruthenium red and ^45^Ca^2+^ in nitrocellulose blot overlays. In spin‐dialysis studies, purified p110 saturably bound approximately 75 nmol Ca^2+^/mg protein at a concentration of 1 mM total Ca^2+^ with half‐maximal binding observed at 105 μM Ca^2+^. With purification, p110 became increasingly susceptible to proteolytic (likely autolytic) fragmentation, although most intermediary peptides between 40 and 90 kDa retained “Stains‐All”, ruthenium red, and ^45^Ca^2+^ binding. N‐terminal sequencing of intact p110 and a 70‐kDa autolytic peptide fragment revealed a strong homology to nucleolin. Two‐dimensional sodium dodecyl sulfate–polyacrylamide gel electrophoresis (SDS–PAGE)/IEF revealed autolysis produced increasingly acidic peptide fragments ranging in apparent pI's from 5.5 for intact p110 to 3.5 for a 40 kDa peptide fragment. Intact p110 and several peptide fragments were immunostained with a highly specific anti‐nucleolin antibody, R2D2, thus confirming the identity of this protein with nucleolin. These annexin‐like Ca^2+^‐binding characteristics of nucleolin are likely contributed by its highly acidic argyrophilic N‐terminus with autolysis apparently resulting in largely selective removal of its basic C‐terminal domain. Although the Ca^2+^‐dependent functions of nucleolin are unknown, we discuss the possibility that like the structurally analogous HMG‐1, its Ca^2+^‐dependent actions may regulate chromatin structure, possibly during apoptosis. J. Cell. Biochem. 85: 268–278, 2002. © 2002 Wiley‐Liss, Inc.
📜 SIMILAR VOLUMES
## Calcium ions act as modulators of many fundamental processes in eukaryotic cells. Although these processes apparently involve initial interactions between calcium ions and cell membranes, the identity of the putative membrane Caz+binding proteins has until recently been obscure. This article de
A Ca2+-dependent protein kinase of Tetrahymena thermophila has been partially purified and characterized. The molecular mass of the enzyme is less than that of similar enzymes (for example protein kinase C), being about 55 kDa. After purification and in the presence of Ca2+ the enzyme activity incre
## Abstract Isolated cell wall preparations of __N. crassa__ bind significant levels of Ca, Mg and other divalent cations. Enzymatic treatment of the cell wall with β‐(1,3)‐glucanase, but not with chitinase, resulted in solubilization of only the calcium‐binding protein fraction. A calcium‐binding
## Abstract The basement membrane protein laminin and the IKVAV‐containing sequence from the laminin αl chain have been found to promote the differentiation of primary neurons and a variety of neural cell lines. We previously reported that a 110‐kd IKVAV‐binding protein (LBP110) isolated from brain