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N-glycosylation in the SERPIN domain of the C1-esterase inhibitor in hereditary angioedema
Zhen Ren, John Bao, Shuangxia Zhao, Nicola Pozzi, H. James Wedner, John P. Atkinson
Zhen Ren, John Bao, Shuangxia Zhao, Nicola Pozzi, H. James Wedner, John P. Atkinson
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Research Article Immunology

N-glycosylation in the SERPIN domain of the C1-esterase inhibitor in hereditary angioedema

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Abstract

Hereditary angioedema is an autosomal dominant disorder caused by defects in C1-esterase inhibitor (C1-INH), resulting in poorly controlled activation of the kallikrein-kinin system and bradykinin overproduction. C1-INH is a heavily glycosylated protein in the serine protease inhibitor (SERPIN) family, yet the role of these glycosylation sites remains unclear. To elucidate the functional impact of N-glycosylation in the SERPIN domain of C1-INH, we engineered 4 sets consisting of 26 variants at or near the N-linked sequon (NXS/T). Among these, 6 are reported in patients with hereditary angioedema and 5 are known C1-INH variants without accessible clinical histories. We systematically evaluated their expression, structure, and functional activity with C1s̄, FXIIa, and kallikrein. Our findings showed that of the 11 reported variants, 7 were deleterious. Deleting N at the 3 naturally occurring N-linked sequons (N238, N253, and N352) resulted in pathologic consequences. Altering these sites by substituting N with A disrupted N-linked sugar attachment, but preserved protein expression and function. Furthermore, an additional N-linked sugar generated at N272 impaired C1-INH function. These findings highlight the importance of N-linked sequons in modulating the expression and function of C1-INH. Insights gained from identifying the pathological consequences of N-glycan variants should assist in defining more tailored therapy.

Authors

Zhen Ren, John Bao, Shuangxia Zhao, Nicola Pozzi, H. James Wedner, John P. Atkinson

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Figure 4

N238 glycosylation site variants.

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N238 glycosylation site variants.
(A) Western blot (WB) analysis of supe...
(A) Western blot (WB) analysis of supernatants from transfected WT C1-INH and variant constructs of N238 under reducing conditions. The recombinant expression of N238A and A239D was comparable to WT (see Table 1). The secretion of N238del was markedly decreased compared with that of WT. The consensus sequence of N238 glycosylation NXS/T is highlighted in blue, orange, and red. (B–E) Functional analysis of N238 variants. (B and D) Absorbance is plotted against protein concentration. (C and E) Relative absorbance (RA) was computed as the absorbance of the variant divided by the absorbance of the WT at concentrations of 1 μg/mL, 500 ng/mL, 250 ng/mL, and 125 ng/mL. Data represent 3 separate experiments, with bars corresponding to SEM. *P < 0.05 for the percentage difference in FXIIa binding between N238A and WT by 1-way ANOVA with Dunnett’s multiple-comparison test. The P value for the percentage difference in FXIIa binding between A239D and WT is 0.358. For PKa binding, the P values for the percentage differences of N238A and A239D compared with WT are 0.918 and 0.254, respectively. (F) Structural analysis of N238 (PDB: 5DU3). N238 is located on the surface of helix E (hE). N238del results in the disruption of the consensus sequence NXS, which is required for the attachment of N-glycan. In the absence of glycosylation, N238del likely leads to protein misfolding.

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