跳转至内容
Merck
CN
  • Human plasma N-glycoproteome analysis by immunoaffinity subtraction, hydrazide chemistry, and mass spectrometry.

Human plasma N-glycoproteome analysis by immunoaffinity subtraction, hydrazide chemistry, and mass spectrometry.

Journal of proteome research (2005-12-13)
Tao Liu, Wei-Jun Qian, Marina A Gritsenko, David G Camp, Matthew E Monroe, Ronald J Moore, Richard D Smith
摘要

The enormous complexity, wide dynamic range of relative protein abundances of interest (over 10 orders of magnitude), and tremendous heterogeneity (due to post-translational modifications, such as glycosylation) of the human blood plasma proteome severely challenge the capabilities of existing analytical methodologies. Here, we describe an approach for broad analysis of human plasma N-glycoproteins using a combination of immunoaffinity subtraction and glycoprotein capture to reduce both the protein concentration range and the overall sample complexity. Six high-abundance plasma proteins were simultaneously removed using a pre-packed, immobilized antibody column. N-linked glycoproteins were then captured from the depleted plasma using hydrazide resin and enzymatically digested, and the bound N-linked glycopeptides were released using peptide-N-glycosidase F (PNGase F). Following strong cation exchange (SCX) fractionation, the deglycosylated peptides were analyzed by reversed-phase capillary liquid chromatography coupled to tandem mass spectrometry (LC-MS/MS). Using stringent criteria, a total of 2053 different N-glycopeptides were confidently identified, covering 303 nonredundant N-glycoproteins. This enrichment strategy significantly improved detection and enabled identification of a number of low-abundance proteins, exemplified by interleukin-1 receptor antagonist protein (approximately 200 pg/mL), cathepsin L (approximately 1 ng/mL), and transforming growth factor beta 1 (approximately 2 ng/mL). A total of 639 N-glycosylation sites were identified, and the overall high accuracy of these glycosylation site assignments as assessed by accurate mass measurement using high-resolution liquid chromatography coupled to Fourier transform ion cyclotron resonance mass spectrometry (LC-FTICR) is initially demonstrated.

材料
产品编号
品牌
产品描述

Sigma-Aldrich
脂肪酶 来源于皱褶假丝酵母, Type VII, ≥700 unit/mg solid
Sigma-Aldrich
脂肪酶 来源于猪胰腺, Type II, ≥125 units/mg protein (using olive oil (30 min incubation)), 30-90 units/mg protein (using triacetin)
Sigma-Aldrich
脂肪酶丙烯酸树脂, ≥5,000 U/g, recombinant, expressed in Aspergillus niger
Sigma-Aldrich
重组脂肪酶 B 南极假丝酵母 来源于米曲霉, powder, beige, ~9 U/mg
Sigma-Aldrich
脂肪酶 来源于猪胰腺, Type VI-S, ≥20,000 units/mg protein, lyophilized powder
Sigma-Aldrich
脂肪酶 来源于黑曲霉, powder (fine), ~200 U/g
Sigma-Aldrich
脂肪酶 来源于皱褶假丝酵母, lyophilized powder, ≥40,000 units/mg protein
Sigma-Aldrich
脂肪酶 来源于念珠菌 属, recombinant, expressed in Aspergillus niger
Sigma-Aldrich
固定化脂肪酶 来源于南极假丝酵母, beads, slightly brown, >2 U/mg
Sigma-Aldrich
脂肪酶 来源于米赫根毛霉, ≥20,000 U/g
Sigma-Aldrich
脂肪酶 来源于洋葱假单胞菌, powder, light beige, ≥30 U/mg
Sigma-Aldrich
脂肪酶 来源于小麦胚芽, Type I, lyophilized powder, 5-15 units/mg solid
Sigma-Aldrich
脂肪酶 来源于米根霉, powder (fine), ~10 U/mg
Sigma-Aldrich
脂肪酶 来源于皱褶假丝酵母, powder, yellow-brown, ≥2 U/mg
Sigma-Aldrich
脂肪酶 来源于假单胞菌 属, Type XIII, lyophilized powder, ≥15 units/mg solid
Sigma-Aldrich
脂肪酶 来源于米曲霉, lyophilized, powder, white, ~50 U/mg
Sigma-Aldrich
脂肪酶 来源于皱褶假丝酵母, lyophilized, powder (fine), 15-25 U/mg
Sigma-Aldrich
脂肪酶 来源于米黑毛霉菌, lyophilized powder, ≥4,000 units/mg solid (using olive oil)
Sigma-Aldrich
脂肪酶 来源于猪胰腺 来源于雪白根霉菌, powder (fine), ≥1.5 U/mg
Sigma-Aldrich
南极假丝酵母脂肪酶A,重组 来源于米曲霉, powder, beige, ~2 U/mg
Sigma-Aldrich
脂肪酶 来源于米黑毛霉菌, powder, slightly brown, ~1 U/mg