| Literature DB >> 30289411 |
James W Noble1, Rehab Almalki2, S Mark Roe2, Armin Wagner3, Ramona Duman3, John R Atack4.
Abstract
Calbindin-D28K is a widely expressed calcium-buffering cytoplasmic protein that is involved in many physiological processes. It has been shown to interact with other proteins, suggesting a role as a calcium sensor. Many of the targets of calbindin-D28K are of therapeutic interest: for example, inositol monophosphatase, the putative target of lithium therapy in bipolar disorder. Presented here is the first crystal structure of human calbindin-D28K. There are significant deviations in the tertiary structure when compared with the NMR structure of rat calbindin-D28K (PDB entry 2g9b), despite 98% sequence identity. Small-angle X-ray scattering (SAXS) indicates that the crystal structure better predicts the properties of calbindin-D28K in solution compared with the NMR structure. Here, the first direct visualization of the calcium-binding properties of calbindin-D28K is presented. Four of the six EF-hands that make up the secondary structure of the protein contain a calcium-binding site. Two distinct conformations of the N-terminal EF-hand calcium-binding site were identified using long-wavelength calcium single-wavelength anomalous dispersion (SAD). This flexible region has previously been recognized as a protein-protein interaction interface. SAXS data collected in both the presence and absence of calcium indicate that there are no large structural differences in the globular structure of calbindin-D28K between the calcium-loaded and unloaded proteins. open access.Entities:
Keywords: calbindin; calbindin-D28K; calcium; calcium SAD; long wavelength
Mesh:
Substances:
Year: 2018 PMID: 30289411 PMCID: PMC6173056 DOI: 10.1107/S2059798318011610
Source DB: PubMed Journal: Acta Crystallogr D Struct Biol ISSN: 2059-7983 Impact factor: 7.652
Crystallographic statistics and merging statistics produced by autoPROC for PDB entry 6fie (crystal condition 2) and AIMLESS for the calcium SAD data set (crystallization condition 1)
Values in parentheses are for the highest shell.
| Data set | PDB entry | Calcium SAD |
|---|---|---|
| Beamline | I03, DLS | I23, DLS |
| Unit-cell parameters | ||
|
| 84.62 | 88.09 |
|
| 104.22 | 100.17 |
|
| 29.61 | 30.69 |
| α (°) | 90 | 90 |
| β (°) | 90 | 90 |
| γ (°) | 90 | 90 |
| Space group |
|
|
| Wavelength (Å) | 0.976 | 3.02 |
| Resolution range (Å) | 29.61–1.51 (1.54–1.51) | 50.9–1.98 (2.03–1.98) |
| No. of observations | 151983 (7621) | 119199 (3772) |
| No. of unique observations | 41505 (2048) | 15168 (848) |
| Completeness (%) | 99.1 (99.8) | 99.7 (60.2) |
| Multiplicity | 3.7 (3.7) | 7.9 (4.4) |
| Anomalous completeness (%) | 91.6 (93.2) | 73.8 (57.0) |
| Anomalous multiplicity | 2.0 (2.0) | 4.1 (2.3) |
|
| 0.041 (0.852) | 0.090 (0.970) |
|
| 0.024 (0.506) | 0.030 (0.330) |
| CC1/2 | 0.998 (0.365) | 0.997 (0.743) |
| 〈 | 14.4 (1.4) | 13.8 (1.8) |
| Refinement |
| |
| Resolution range (Å) | 21.90–1.51 | |
|
| 0.202 | |
|
| 0.236 | |
| No. of protein atoms | 4127 | |
| No. of ligand atoms | 4 | |
| No. of solvent atoms | 180 | |
| Mean | 37 | |
| R.m.s.d., bond lengths (Å) | 0.01 | |
| R.m.s.d., bond angles (°) | 1.02 | |
Figure 1The two Ca atoms in EF1 from the substructure coordinates. The distance between the peaks is shown. There was an estimated occupancy of 50% for each calcium. The Ca atom in pink is that refined in PDB entry 6fie.
Figure 2The four EF-hand calcium-binding loops of calbindin-D28K. Calcium-binding amino acids, water molecules and calcium ions are shown, while the rest of the structure is illustrated by a cartoon representation. Each calcium ion is coordinated with a pentagonal bipyramidal coordination geometry, the bonds for which are represented by a dotted line. The EF1 calcium is coordinated by Asp24, Asp26, Ser28, Tyr30, Glu35 and water, the EF3 calcium by Asp111, Asp113, Ser115, Phe117, Glu119 and Glu122, the EF4 calcium by Asp155, Asn157, Asp159, Lys161, Glu166 and water, and the EF5 calcium by Asp199, Asp201, Asn203, Tyr205, Glu210 and water.
The aligned calcium-binding loops from calbindin-D28K starting from the first calcium-binding residue
Calcium-binding residues are highlighted in bold. A backbone carbonyl group binds the calcium at position 7.
| Amino-acid position starting from the first calcium-binding residue | |||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| EF-hand | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | 10 | 11 | 12 | Water |
| EF1 |
| Ala |
| Gly |
| Gly |
| Leu | Glu | Gly | Lys |
|
|
| EF3 |
| Thr |
| His |
| Gly |
| Ile |
| Thr | Glu |
| N |
| EF4 |
| Ser |
| Asn |
| Gly |
| Leu | Glu | Leu | Thr |
|
|
| EF5 |
| Gln |
| Gly |
| Gly |
| Ile | Asp | Glu | Asn |
|
|
Figure 3(a) Log10 SAXS intensity versus scattering vector q. The plotted range represents the positive-only data within the specified q-range (red). The calculated FoXS scattering curve of PDB entry 6fie (blue) and calculated FoXS scattering curves for the first five models of PDB entry 2g9b (green, turquoise, pink, orange and black). (b) FATCAT pairwise alignment and superimposition (PDB entry 6fie, red; PDB entry 2g9b, orange); there is a 90° rotation between the two images. (c) Measurement of the distance between the Cα atoms of Lys34 and Lys221; the distance is shown in Å