Zanaboni G, Rossi A, Onana A M, Tenni R
Dipartimento di Biochimica 'A. Castellani', Università di Pavia, via Taramelli 3b, 27100, Pavia, Italy.
Matrix Biol. 2000 Nov;19(6):511-20. doi: 10.1016/s0945-053x(00)00096-2.
The thermal stability of the trimeric species formed by seven type I collagen CNBr peptides was determined at neutral and acidic pH. Melting temperature of peptide trimers and free energy change for monomer to trimer transition were used as indices of trimer stability. A greater stability at neutral pH than at acidic pH was found for all peptides analysed because in most conditions an entropic gain overwhelms an enthalpic cost. Enthalpic reasons are prevailing only in some conditions of the more acidic peptides. The overlap zone of type I collagen fibrils is more basic than the gap zone and is therefore more sensitive to variations of pH from neutral to acidic, e.g. in bone degradation when osteoclasts acidify the lacuna lying between cell and bone. Peptide trimer stability in neutral conditions is influenced also by the chaotropic nature and the concentration of three anions: chloride, sulfate and phosphate. This was more evident for sulfate at the highest concentration used (0.5 M) when a greater stability is caused by entropic reasons. The contribution of hydroxyproline to the stability of peptide trimers is greater at neutral than at acidic pH, particularly at the highest concentration of sulfate. All our data indicate that pH, chaotropic nature and concentration of three anions influence the networks of hydrogen bonds present in the collagen triple helical structure.
通过七种I型胶原CNBr肽形成的三聚体物种的热稳定性在中性和酸性pH条件下进行了测定。肽三聚体的解链温度和单体向三聚体转变的自由能变化被用作三聚体稳定性的指标。对于所有分析的肽,发现在中性pH下比在酸性pH下具有更高的稳定性,因为在大多数情况下,熵增超过了焓变。焓变原因仅在一些酸性较强的肽的某些条件下占主导。I型胶原纤维的重叠区比间隙区碱性更强,因此对pH从中性到酸性的变化更敏感,例如在破骨细胞使细胞与骨之间的腔隙酸化的骨降解过程中。中性条件下肽三聚体的稳定性还受三种阴离子(氯离子、硫酸根离子和磷酸根离子)的离液序列高的性质和浓度的影响。当使用最高浓度(0.5 M)的硫酸根离子时,这种情况更为明显,此时由于熵变原因导致更高的稳定性。在中性pH下,羟脯氨酸对肽三聚体稳定性的贡献比在酸性pH下更大,特别是在硫酸根离子浓度最高时。我们所有的数据表明,pH、离液序列高的性质和三种阴离子的浓度会影响胶原三螺旋结构中存在的氢键网络。