Department of Biotechnology, Sinhgad College of Engineering and Department of Technology, Affiliated to Savitribai Phule Pune University, Pune, 411041, India.
Innovation Biologicals Private Limited, 100 NCL Innovation Park, Dr. Homi Bhabha Road, Pashan, Pune, 411 008, India.
Protein Expr Purif. 2022 Aug;195-196:106095. doi: 10.1016/j.pep.2022.106095. Epub 2022 Apr 19.
Hydrophobins (HPs) are relatively small surface-active proteins of fungal origin. Being an industrially important protein, isolation of new molecules from GRAS (Generally Regarded as Safe) strains like mushrooms is the need of the time. In the present work, hydrophobin Vmh3-1 is isolated, purified, and identified from a culture broth and vegetative mycelia of Pleurotus ostreatus grown in a Potato dextrose broth (PDB) in static culture conditions. Purified proteins from the broth and the cell wall showed bands of 11 kDa and 17 kDa when analyzed on SDS-PAGE. Hydrophobin Vmh3-1 was identified in purified protein samples by the Orbitrap-HR-LC-MS/MS analysis with a maximum of 66% sequence coverage. The amphipathic nature of the protein was revealed by an increase in the water contact angle (WCA) of the hydrophilic surface of glass by 87% as well as a decrease in the WCA of the hydrophobic surface of Teflon by 19%. The emulsification property was tested with food-grade oils and Hexane. A maximum activity (EI ) of 87.64% was recorded for Sunflower oil. In CD (Circular dichroism) spectra, Vmh3-1 showed the typical spectra of hydrophobin with a dominance of β-sheets (51%) in the secondary structure and a minimum percentage of the α-helix (2%). The protein did not show a self-aggregating property on vigorous shaking making it suitable for numerous industrial applications. The identification of Vmh3-1 with detailed amino acid sequencing and the characterization of the protein to evaluate its potential in surface modifications for various industrial applications is demonstrated herein for the first time.
疏水蛋白(HPs)是一种源自真菌的相对较小的表面活性蛋白。作为一种具有工业重要性的蛋白质,从像蘑菇这样的 GRAS(通常被认为是安全的)菌株中分离新的分子是当前的需求。在本工作中,从在静置培养条件下于土豆葡萄糖肉汤(PDB)中生长的糙皮侧耳的发酵液和营养菌丝体中分离、纯化和鉴定了疏水蛋白 Vmh3-1。在 SDS-PAGE 上分析时,从发酵液和细胞壁中纯化的蛋白质显示出 11 kDa 和 17 kDa 的条带。通过 Orbitrap-HR-LC-MS/MS 分析,在纯化的蛋白质样品中鉴定出 Vmh3-1,其序列覆盖率最高可达 66%。通过将亲水玻璃表面的水接触角(WCA)增加 87%以及将疏水特氟龙表面的 WCA 降低 19%,揭示了该蛋白质的两亲性质。用食品级油和己烷测试了乳化性能。葵花籽油的最大活性(EI)为 87.64%。在 CD(圆二色性)光谱中,Vmh3-1 显示出疏水蛋白的典型光谱,其二级结构中β-折叠(51%)占主导地位,α-螺旋(2%)的比例最小。该蛋白在剧烈摇晃下不表现出自聚集性质,使其适用于许多工业应用。本文首次对 Vmh3-1 进行了详细的氨基酸测序鉴定,并对其进行了蛋白特性评估,以评估其在各种工业应用表面修饰中的潜力。