首页> 外文OA文献 >Conformationally driven protease-catalyzed splicing of peptide segments: V8 protease-mediated synthesis of fragments derived from thermolysin and ribonuclease A.
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Conformationally driven protease-catalyzed splicing of peptide segments: V8 protease-mediated synthesis of fragments derived from thermolysin and ribonuclease A.

机译:构象驱动的蛋白酶催化的肽段剪接:V8蛋白酶介导的合成来自嗜热菌素和核糖核酸酶A的片段。

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摘要

We have studied the conformation as well as V8 protease-mediated synthesis of peptide fragments, namely amino acid residues 295-316 (TC-peptide) of thermolysin and residues 1-20 (S-peptide) of ribonuclease A, to examine whether "conformational trapping" of the product can facilitate reverse proteolysis. The circular dichroism study showed cosolvent-mediated cooperative helix formation in TC-peptide with attainment of about 30-35% helicity in the presence of 40% 1-propanol and 2-propanol solutions at pH 6 and 4 degrees C. The thermal melting profiles of TC-peptide in the above cosolvents were very similar. V8 protease catalyzed the synthesis of TC-peptide from a 1:1 mixture of the non-interacting complementary fragments (TC295-302 and TC303-316) in the presence of the above cosolvents at pH 6 and 4 degrees C. In contrast, V8 protease did not catalyze the ligation of S1-9 and S10-20, although S-peptide could assume helical conformation in the presence of the cosolvent used for the semisynthetic reaction. V8 protease was able to synthesize an analog of S-peptide (SA-peptide) in which residues 10-14 were substituted (RQHMD-->VAAAK). While S-peptide exhibited helical conformation in the presence of aqueous propanol solutions, SA-peptide displayed predominantly beta-sheet conformation. SA-peptide showed enhanced resistance to proteolysis as compared with S-peptide. Thus, failure of semisynthesis of S-peptide may be a consequence of high flexibility around the 9-10 peptide bond due to its proximity to the helix stop signal. The results suggest that protease-mediated ligations may be achieved by design and manipulation of the conformational aspects of the product.
机译:我们已经研究了肽片段的构象以及V8蛋白酶介导的肽片段的合成,即嗜热菌素的295-316位氨基酸残基(TC-肽)和核糖核酸酶A的1-20位残基(S-肽),以检查是否“构象性”。产品的“捕获”可以促进反向蛋白水解。圆二色性研究显示,在40%1-丙醇和2-丙醇溶液(pH 6和4摄氏度)下,在TC肽中助溶剂介导的合作螺旋形成,螺旋度约为30-35%。上述助溶剂中TC肽的含量非常相似。在上述助溶剂存在下,在pH 6和4摄氏度下,V8蛋白酶催化非相互作用互补片段(TC295-302和TC303-316)的1:1混合物合成TC肽。相反,V8蛋白酶不能催化S1-9和S10-20的连接,尽管在半合成反应所用助溶剂存在下S肽可能呈螺旋构象。 V8蛋白酶能够合成类似的S肽(SA肽),其中残基10-14被取代(RQHMD-> VAAAK)。在丙醇水溶液存在下,S肽呈螺旋构象,而SA肽则主要呈β-折叠构象。与S肽相比,SA肽对蛋白水解的抵抗力增强。因此,S-肽半合成的失败可能是由于9-10肽键附近的螺旋终止信号附近的高柔韧性导致的。结果表明,蛋白酶介导的连接可以通过设计和操纵产物的构象方面来实现。

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