scholarly journals The less conserved metal-binding site in human CRISP1 remains sensitive to zinc ions to permit protein oligomerization

2021 ◽  
Vol 11 (1) ◽  
Author(s):  
Jie Sheng ◽  
Bart M. Gadella ◽  
Nick K. Olrichs ◽  
Dora V. Kaloyanova ◽  
J. Bernd Helms

AbstractCysteine-rich secretory proteins (CRISPs) are a subgroup of the CRISP, antigen 5 and PR-1 (CAP) superfamily that is characterized by the presence of a conserved CAP domain. Two conserved histidines in the CAP domain are proposed to function as a Zn2+-binding site with unknown function. Human CRISP1 is, however, one of the few family members that lack one of these characteristic histidine residues. The Zn2+-dependent oligomerization properties of human CRISP1 were investigated using a maltose-binding protein (MBP)-tagging approach in combination with low expression levels in XL-1 Blue bacteria. Moderate yields of soluble recombinant MBP-tagged human CRISP1 (MBP-CRISP1) and the MBP-tagged CAP domain of CRISP1 (MBP-CRISP1ΔC) were obtained. Zn2+ specifically induced oligomerization of both MBP-CRISP1 and MBP-CRISP1ΔC in vitro. The conserved His142 in the CAP domain was essential for this Zn2+ dependent oligomerization process, confirming a role of the CAP metal-binding site in the interaction with Zn2+. Furthermore, MBP-CRISP1 and MBP-CRISP1ΔC oligomers dissociated into monomers upon Zn2+ removal by EDTA. Condensation of proteins is characteristic for maturing sperm in the epididymis and this process was previously found to be Zn2+-dependent. The Zn2+-induced oligomerization of human recombinant CRISP1 may shed novel insights into the formation of functional protein complexes involved in mammalian fertilization.

Metallomics ◽  
2014 ◽  
Vol 6 (10) ◽  
pp. 1841-1852 ◽  
Author(s):  
Alessandro Sinopoli ◽  
Antonio Magrì ◽  
Danilo Milardi ◽  
Matteo Pappalardo ◽  
Pietro Pucci ◽  
...  

Copper(ii) coordination to human amylin has an influence on the aggregation and cytotoxic features of the polypeptide. Comparative investigations, carried out on a model peptide encompassing the 17–29 aminoacid region of amylin containing the putative metal binding site, support the non-fibrillar nature of the copper(ii) complexes.


2021 ◽  
Vol 22 (14) ◽  
pp. 7288
Author(s):  
Francisco Andrés Peralta ◽  
J. Pablo Huidobro-Toro ◽  
Raúl Mera-Adasme

To ascertain the role of Zn(II) as an allosteric modulator on P2X4R, QM/MM molecular dynamic simulations were performed on the WT and two P2X4R mutants suggested by previous electrophysiological data to affect Zn(II) binding. The Gibbs free energy for the reduction of the putative P2X4R Zn(II) binding site by glutathione was estimated at −22 kcal/mol. Simulations of the WT P2X4R head domain revealed a flexible coordination sphere dominated by an octahedral geometry encompassing C126, N127, C132, C149, C159 and a water molecule. The C132A mutation disrupted the metal binding site, leading to a coordination sphere with a majority of water ligands, and a displacement of the metal ion towards the solvent. The C132A/C159A mutant exhibited a tendency towards WT-like stability by incorporating the R148 backbone to the coordination sphere. Thus, the computational findings agree with previous experimental data showing Zn(II) modulation for the WT and C132A/C159A variants, but not for the C132A mutant. The results provide molecular insights into the nature of the Zn(II) modulation in P2X4R, and the effect of the C132A and C132A/C159A mutations, accounting for an elusive modulation mechanism possibly occurring in other extracellular or membrane protein.


2021 ◽  
Author(s):  
Daniel Kocsi ◽  
Daniel Kovacs ◽  
Jordann A. L. Wells ◽  
Eszter Borbas

Luminescent Eu(III) and Tb(III) complexes were synthesised from octadentate ligands carrying various carbostyril sensitizing antennae and two bidentate picolinate donors. Antennae were connected to the metal binding site via tertiary...


2005 ◽  
Vol 14 (11) ◽  
pp. 2828-2837 ◽  
Author(s):  
Alexandre Olry ◽  
Sandrine Boschi-Muller ◽  
Hong Yu ◽  
Daniel Burnel ◽  
Guy Branlant

Metallomics ◽  
2012 ◽  
Vol 4 (5) ◽  
pp. 480 ◽  
Author(s):  
Ridvan Nepravishta ◽  
Francesca Polizio ◽  
Maurizio Paci ◽  
Sonia Melino

Biochemistry ◽  
2002 ◽  
Vol 41 (15) ◽  
pp. 4809-4818 ◽  
Author(s):  
Gloria C. Ferreira ◽  
Ricardo Franco ◽  
Arianna Mangravita ◽  
Graham N. George

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