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Inactivation of N-terminal signaling domain of Sonic hedgehog by forming a disulfide bond

机译:通过形成二硫键使Sonic刺猬的N末端信号域失活

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The N-terminal domain of mouse Sonic hedgehog (Shh-N) expressed in mammalian cells showed four-fold bands on non-reduced SDS-PAGE, though it was homogeneous under reduced conditions. It contains three cysteine residues, Cys-25, Cys-103, and Cys-184, which may be concerned with this heterogeneity. Therefore, we examined the formation of a disulfide bond in the recombinant Shh-N and identified three kinds of disulfides with a combination of peptide mapping and NH_2-terminal amino acid sequencing analysis. Among them, one type of the Shh-N containing a disulfide bond of Cys-103/Cys-184 could be separated from the other Shh-Ns using reverse phase HPLC and had no activity of alkaline phosphatase induction in C3H10T1/2 cells. This molecule could also be made by denaturation of the purified Shh-N with guanidine-HCl under nonreduced conditions. On the other hand, the reduced Shh-N and the reduced S-methylated Shh-N at cysteine residues showed approximately 10-fold higher activity compared to the originally purified Shh-N. These results suggested that Shh-N was synthesized as an active form whose three cysteine residues did not form disulfide and inactivated finally by forming a disulfide bond between Cys-103 and Cys-184.
机译:小鼠声波刺猬(Shh-N)在哺乳动物细胞中表达的N末端结构域在未还原的SDS-PAGE上显示了四倍的条带,尽管在还原条件下是均匀的。它包含三个半胱氨酸残基Cys-25,Cys-103和Cys-184,这可能与这种异质性有关。因此,我们检查了重组Shh-N中二硫键的形成,并结合肽图分析和NH_2末端氨基酸测序分析确定了三种二硫键。其中,一种可以通过反相HPLC将含有Cys-103 / Cys-184二硫键的Shh-N与其他Shh-Ns分离,并且在C3H10T1 / 2细胞中不具有碱性磷酸酶诱导活性。该分子也可以通过在非还原条件下用胍-HCl使纯化的Shh-N变性来制备。另一方面,与最初纯化的Shh-N相比,在半胱氨酸残基上还原的Shh-N和还原的S-甲基化的Shh-N显示出约高十倍的活性。这些结果表明Shh-N被合成为活性形式,其三个半胱氨酸残基不形成二硫键,并且通过在Cys-103和Cys-184之间形成二硫键而最终失活。

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