Nikiforovich Gregory V, Marshall Garland R, Achilefu Samuel
Department of Biochemistry and Molecular Biology, Washington University Medical School, St. Louis, MO 63110, USA.
Chem Biol Drug Des. 2007 Mar;69(3):163-9. doi: 10.1111/j.1747-0285.2007.00493.x.
Several analogs of somatostatin with conformational constraints in their peptide backbones have been modeled to determine energetically feasible conformations. Comparison of low-energy backbone structures of these peptides suggested unique conformations of the central Phe/Ala(i)-D-Trp(i+1)-Lys(i+2)-Thr(i+3) fragment characteristic for specific interactions of somatostatin with each of the five distinct subtypes of somatostatin receptors (SSTRs). The conformations obtained were in good agreement with experimental data obtained earlier by NMR measurements and/or X-ray crystallography. The results help rationalize experimental observations on the specificity of binding of various somatostatin analogs with different subtypes of the SSTRs. They also serve as templates for the design of conformationally constrained non-peptide scaffolds that effectively and selectively interact with different subtypes of SSTRs. Such scaffolds can be convenient carriers of radiolabels and near-infrared labels in specific agents for imaging tumors expressing different SSTR subtypes.
已对几种肽主链具有构象限制的生长抑素类似物进行建模,以确定能量上可行的构象。对这些肽的低能量主链结构的比较表明,中央Phe/Ala(i)-D-Trp(i+1)-Lys(i+2)-Thr(i+3)片段具有独特构象,这是生长抑素与生长抑素受体(SSTRs)的五种不同亚型各自进行特异性相互作用的特征。所获得的构象与早期通过核磁共振测量和/或X射线晶体学获得的实验数据高度吻合。这些结果有助于解释关于各种生长抑素类似物与不同亚型SSTRs结合特异性的实验观察结果。它们还可作为设计能与不同亚型SSTRs有效且选择性相互作用的构象受限非肽支架的模板。此类支架可作为放射性标记和近红外标记的便捷载体,用于特定的成像剂中,以对表达不同SSTR亚型的肿瘤进行成像。