Pan Yini, Zhang Chenhui, Xiao Ruili, Zhang Lingyi, Zhang Weibing
Shanghai Key Laboratory of Functional Materials Chemistry,School of Chemistry & Molecular Engineering, East China University of Science and Technology, Shanghai, PR China.
Shanghai Key Laboratory of Functional Materials Chemistry,School of Chemistry & Molecular Engineering, East China University of Science and Technology, Shanghai, PR China.
Anal Chim Acta. 2021 May 8;1158:338412. doi: 10.1016/j.aca.2021.338412. Epub 2021 Mar 16.
In this work, a dual-functionalized magnetic bimetallic metal-organic framework composite denoted as FeO@SiO@(Zr-Ti-MOF)-NH was ingeniously designed and fabricated by a facial layer-by-layer assembly technique. The composite not only exhibited strong affinity for phosphopeptide due to the coexistence of Zr-O clusters and Ti-O clusters, but also owned great hydrophilicity for glycopeptides relying on abundant hydrophilic NH groups, meeting the demand for simultaneously enrichment and sequential elution of phosphopeptides and glycopeptides. As expected, the synthesized composite showed great selectivity (1:2000 M ratio of β-casein:BSA; 1:50 M ratio of IgG:BSA), good sensitivity (1 fmol μL for both α-casein and IgG), and good capacity (80 mg g for α-casein and 200 mg g for IgG). By using sequential elution strategy, 29 phosphopeptides and 24 glycopeptides from α-casein and IgG digests mixture could be simultaneously enriched and respectively detected through a single-step enrichment and sequential elution method. Furthermore, the composite was successfully applied to the analysis of intricate biological samples. 4 endogenous phosphopeptides and 20 phosphopeptides were trapped from human serum and non-fat milk tryptic digest respectively. From 0.5 mg of tryptic digest of rat brain, 141 N-linked glycopeptides corresponding to 127 glycoproteins and 918 phosphopeptides corresponding to 397 phosphoproteins were enriched simultaneously and identified respectively, proving the FeO@SiO@(Zr-Ti-MOF)-NH to be a dependable candidate for the simultaneously enrichment of trace phosphopeptides and glycopeptides in intricate biological samples.
在本工作中,通过简便的层层组装技术巧妙设计并制备了一种双功能化磁性双金属金属有机框架复合材料,记为FeO@SiO@(Zr-Ti-MOF)-NH。该复合材料不仅由于Zr-O簇和Ti-O簇的共存而对磷酸肽表现出强烈的亲和力,还因丰富的亲水性NH基团而对糖肽具有良好的亲水性,满足了同时富集和顺序洗脱磷酸肽和糖肽的需求。正如预期的那样,合成的复合材料表现出良好的选择性(β-酪蛋白与牛血清白蛋白的摩尔比为1:2000;免疫球蛋白与牛血清白蛋白的摩尔比为1:50)、良好的灵敏度(α-酪蛋白和免疫球蛋白均为1 fmol μL)和良好的容量(α-酪蛋白为80 mg g,免疫球蛋白为200 mg g)。通过采用顺序洗脱策略,α-酪蛋白和免疫球蛋白消化混合物中的29种磷酸肽和24种糖肽可通过一步富集和顺序洗脱方法同时富集并分别检测。此外,该复合材料成功应用于复杂生物样品的分析。分别从人血清和脱脂牛奶胰蛋白酶消化物中捕获了4种内源性磷酸肽和20种磷酸肽。从0.5 mg大鼠脑胰蛋白酶消化物中,同时富集并分别鉴定了对应于127种糖蛋白的141种N-连接糖肽和对应于397种磷酸蛋白的918种磷酸肽,证明FeO@SiO@(Zr-Ti-MOF)-NH是复杂生物样品中痕量磷酸肽和糖肽同时富集的可靠候选材料。