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利用 SYPRO Orange 染色琼脂糖 native 电泳分析无 ATP 及有 ATP 存在时牛血清白蛋白的展开情况。

Analysis of bovine serum albumin unfolding in the absence and presence of ATP by SYPRO Orange staining of agarose native gel electrophoresis.

机构信息

Research and Development Division, Kyokuto Pharmaceutical Industrial Co., Ltd, 3333-26, Aza-Asayama, Kamitezuna Takahagi-shi, Ibaraki, 318-0004, Japan.

Research and Development Division, Kyokuto Pharmaceutical Industrial Co., Ltd, 3333-26, Aza-Asayama, Kamitezuna Takahagi-shi, Ibaraki, 318-0004, Japan; Abwiz Bio Inc., 9823 Pacific Heights Blvd Ste J, San Diego, CA, 92121, USA.

出版信息

Anal Biochem. 2022 Oct 1;654:114817. doi: 10.1016/j.ab.2022.114817. Epub 2022 Jul 19.

Abstract

An attempt was made to specifically stain unfolded proteins on agarose native gels. SYPRO Orange is routinely used to detect unfolded protein in differential scanning fluorimetry, which is based on the enhanced fluorescence intensity upon binding to the unfolded protein. We demonstrated that this dye barely bound to the native proteins, resulting in no or faint staining of the native bands, but bound to and stained the unfolded proteins, on agarose native gels. Using bovine serum albumin (BSA), it was shown that staining did not depend on whether BSA was thermally unfolded in the presence of SYPRO Orange or stained after electrophoresis. On the contrary, SYPRO Orange dye stained protein bands in the presence of sodium dodecylsulfate (SDS) due to incorporation of the dye into SDS micelles that bound to the unfolded proteins. This staining resulted in detection of new, intermediately unfolded structure of BSA during thermal unfolding. Such intermediate structure occurred at higher temperature in the presence of ATP.

摘要

曾尝试在琼脂糖天然胶上特异性染色未折叠的蛋白质。SYPRO Orange 通常用于检测差示扫描荧光法中的未折叠蛋白,其原理是结合到未折叠蛋白上后增强荧光强度。我们证明,这种染料几乎不与天然蛋白结合,导致天然带几乎没有或微弱染色,但与琼脂糖天然胶上的未折叠蛋白结合并染色。使用牛血清白蛋白(BSA)表明,染色不取决于 SYPRO Orange 存在时 BSA 是否热变性,也不取决于电泳后是否染色。相反,由于染料结合到与未折叠蛋白结合的 SDS 胶束中,SYPRO Orange 染料在十二烷基硫酸钠(SDS)存在下染色蛋白条带。这种染色导致在热变性过程中检测到 BSA 的新的、中间展开结构。在存在 ATP 的情况下,这种中间结构在更高的温度下出现。

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