Vutharadhi Shivaranjani, Nadimpalli Siva Kumar
Glycobiology and Protein Biochemistry Laboratory, Department of Biochemistry, School of Life Sciences, University of Hyderabad, 500046, Telangana, India.
Glycobiology and Protein Biochemistry Laboratory, Department of Biochemistry, School of Life Sciences, University of Hyderabad, 500046, Telangana, India.
Plant Physiol Biochem. 2023 Apr;197:107663. doi: 10.1016/j.plaphy.2023.107663. Epub 2023 Mar 22.
Momordica charantia seeds are known to contain a galactose specific lectin that has been well characterized. Seed extracts also contain glycosidases such as the β-hexosaminidase, α-mannosidase and α-galactosidase. In the present study, lectin was affinity purified from the seed extracts and protein bodies isolated by sucrose density gradient centrifugation. From the protein bodies, lectin was identified and β-hexosaminidase was isolated by lectin affinity chromatography and subsequently separated from other glycosidases by gel filtration. In the native PAGE, the purified β-hexosaminidase migrated as a single band with a molecular weight of ∼235 kDa and by zymogram analysis using 4-methylumbelliferyl N-acetyl-β-D-glucosaminide substrate it was confirmed as β-hexosaminidase. Under reducing conditions in SDS-PAGE, the purified enzyme dissociated into three bands (Mr 33, 20 and 15 kDa). The prominent bands (20 and 15 kDa) showed immunological cross-reactivity with the human Hexosaminidase B antibody in a western blot experiment. In gel digestion of the purified enzyme, followed by proteomic analysis using tandom MS/MS revealed sequence identity as compared to the genomic sequence of the Momordica charantia with a score of 57 (24% sequence coverage). Additionally, by CD analysis the purified β-hexosaminidase showed 39.1% of α-helix. Furthermore, secondary structure variations were observed in presence of substrate, lectin and at different pH values. Protein body membrane prepared from the isolated protein bodies showed a pH dependent interaction with the purified lectin and mixture of glycosidases.
已知苦瓜种子含有一种已得到充分表征的半乳糖特异性凝集素。种子提取物还含有糖苷酶,如β - 己糖胺酶、α - 甘露糖苷酶和α - 半乳糖苷酶。在本研究中,从种子提取物中亲和纯化凝集素,并通过蔗糖密度梯度离心分离蛋白体。从蛋白体中鉴定出凝集素,通过凝集素亲和层析分离β - 己糖胺酶,随后通过凝胶过滤将其与其他糖苷酶分离。在非变性聚丙烯酰胺凝胶电泳(Native PAGE)中,纯化的β - 己糖胺酶迁移为一条单一的条带,分子量约为235 kDa,通过使用4 - 甲基伞形酮基N - 乙酰 - β - D - 葡糖胺底物的酶谱分析,证实其为β - 己糖胺酶。在十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS - PAGE)的还原条件下,纯化的酶解离为三条带(分子量分别为33、20和15 kDa)。在蛋白质印迹实验中,突出的条带(20和15 kDa)与人己糖胺酶B抗体表现出免疫交叉反应性。对纯化酶进行凝胶消化,随后使用串联质谱(tandom MS/MS)进行蛋白质组学分析,结果显示与苦瓜基因组序列具有序列同一性,得分57(序列覆盖率为24%)。此外,通过圆二色性(CD)分析,纯化的β - 己糖胺酶显示α - 螺旋含量为39.1%。此外,在存在底物、凝集素和不同pH值的情况下观察到二级结构变化。从分离的蛋白体制备的蛋白体膜与纯化的凝集素和糖苷酶混合物表现出pH依赖性相互作用。