Marasco Daniela, Saporito Angela, Ponticelli Salvatore, Chambery Angela, De Falco Sandro, Pedone Carlo, Minchiotti Gabriella, Ruvo Menotti
Istituto di Biostrutture e Bioimmagini del CNR, Sezione Biostrutture, Napoli, Italy.
Proteins. 2006 Aug 15;64(3):779-88. doi: 10.1002/prot.21043.
We report for the first time the chemical synthesis of refolded CFC domain of mouse Cripto (mCFC) and of two variants bearing mutations on residues W107 and H104 involved in Alk4 binding. The domains undergo spontaneous and quantitative refolding in about 4 h, yet with very different kinetics. Disulfide linkages have been assessed by enzyme digestion and mass spectrometry analysis of resulting fragments, and the first experimental studies on structural organization have been conducted by circular dichroism spectroscopy under different pH conditions. Upon refolding, the domains considerably change their conformations, although they do not assume canonical structures, and become highly resistant to enzyme degradation. A comparative study of receptor binding shows that the CFC domain can bind Alk4 and confirms the importance of W107 and H104 for receptor recognition.
我们首次报道了小鼠Cripto(mCFC)的重折叠CFC结构域以及在参与与Alk4结合的W107和H104残基上带有突变的两个变体的化学合成。这些结构域在约4小时内经历自发且定量的重折叠,但动力学差异很大。通过酶切和所得片段的质谱分析评估了二硫键,并在不同pH条件下通过圆二色光谱法进行了关于结构组织的首次实验研究。重折叠后,这些结构域虽然未呈现典型结构,但构象发生了显著变化,并对酶降解具有高度抗性。受体结合的比较研究表明,CFC结构域可以结合Alk4,并证实了W107和H104对受体识别的重要性。