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在酸性 pH 值下,单体香蕉凝集素会破坏其天然二聚体形式的构象稳定性。

Monomeric banana lectin at acidic pH overrules conformational stability of its native dimeric form.

机构信息

Interdisciplinary Biotechnology Unit, Aligarh Muslim University, Aligarh, India.

出版信息

PLoS One. 2013 Apr 26;8(4):e62428. doi: 10.1371/journal.pone.0062428. Print 2013.

Abstract

Banana lectin (BL) is a homodimeric protein categorized among jacalin-related family of lectins. The effect of acidic pH was examined on conformational stability of BL by using circular dichroism, intrinsic fluorescence, 1-anilino-8-napthalene sulfonate (ANS) binding, size exclusion chromatography (SEC) and dynamic light scattering (DLS). During acid denaturation of BL, the monomerization of native dimeric protein was found at pH 2.0. The elution profile from SEC showed two different peaks (59.65 ml & 87.98 ml) at pH 2.0 while single peak (61.45 ml) at pH 7.4. The hydrodynamic radii (R h) of native BL was 2.9 nm while at pH 2.0 two species were found with R h of 1.7 and 3.7 nm. Furthermore at, pH 2.0 the secondary structures of BL remained unaltered while tertiary structure was significantly disrupted with the exposure of hydrophobic clusters confirming the existence of molten globule like state. The unfolding of BL with different subunit status was further evaluated by urea and temperature mediated denaturation to check their stability. As inferred from high Cm and ΔG values, the monomeric form of BL offers more resistance towards chemical denaturation than the native dimeric form. Besides, dimeric BL exhibited a Tm of 77°C while no loss in secondary structures was observed in monomers even up to 95°C. To the best of our knowledge, this is the first report on monomeric subunit of lectins showing more stability against denaturants than its native dimeric state.

摘要

香蕉凝集素 (BL) 是一种同型二聚体蛋白,归类于几丁质相关家族凝集素。通过圆二色性、内源荧光、1-苯胺-8-萘磺酸 (ANS) 结合、尺寸排阻色谱 (SEC) 和动态光散射 (DLS) 研究了酸性 pH 对 BL 构象稳定性的影响。在 BL 的酸变性过程中,在 pH 2.0 时发现天然二聚体蛋白发生单体化。在 pH 2.0 时,SEC 的洗脱图谱显示出两个不同的峰 (59.65 ml 和 87.98 ml),而在 pH 7.4 时则显示出一个峰 (61.45 ml)。天然 BL 的流体力学半径 (R h) 为 2.9nm,而在 pH 2.0 时发现两种物质的 R h 分别为 1.7nm 和 3.7nm。此外,在 pH 2.0 时,BL 的二级结构保持不变,而三级结构明显被破坏,暴露出疏水性簇,证实存在类似无定形球蛋白的状态。通过脲和温度介导的变性进一步评估 BL 不同亚基状态的变性,以检查其稳定性。从高 Cm 和 ΔG 值推断,与天然二聚体形式相比,单体形式的 BL 对化学变性具有更高的抗性。此外,二聚体 BL 的 Tm 为 77°C,而单体甚至在 95°C 时没有观察到二级结构的损失。据我们所知,这是首次报道凝集素的单体亚基在抵抗变性剂方面比其天然二聚体状态更稳定。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0cdf/3637162/b80ccc121605/pone.0062428.g001.jpg

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