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N-糖链在早期分泌途径中突变 Ig-μ 链聚合依赖性聚集中的作用。

Roles of N-glycans in the polymerization-dependent aggregation of mutant Ig-μ chains in the early secretory pathway.

机构信息

Division of Genetics and Cell Biology, IRCCS San Raffaele Scientific Institute, Milan, Italy.

Department of Experimental Medicine, University of Genoa, Genoa, Italy.

出版信息

Sci Rep. 2017 Feb 3;7:41815. doi: 10.1038/srep41815.

Abstract

The polymeric structure of secretory IgM allows efficient antigen binding and complement fixation. The available structural models place the N-glycans bound to asparagines 402 and 563 of Ig-μ chains within a densely packed core of native IgM. These glycans are found in the high mannose state also in secreted IgM, suggesting that polymerization hinders them to Golgi processing enzymes. Their absence alters polymerization. Here we investigate their role following the fate of aggregation-prone mutant μ chains lacking the Cμ1 domain (μ∆). Our data reveal that μ∆ lacking 563 glycans (μ∆5) form larger intracellular aggregates than μ∆ and are not secreted. Like μ∆, they sequester ERGIC-53, a lectin previously shown to promote polymerization. In contrast, μ∆ lacking 402 glycans (μ∆4) remain detergent soluble and accumulate in the ER, as does a double mutant devoid of both (μ∆4-5). These results suggest that the two C-terminal Ig-μ glycans shape the polymerization-dependent aggregation by engaging lectins and acting as spacers in the alignment of individual IgM subunits in native polymers.

摘要

分泌型 IgM 的聚合结构允许有效的抗原结合和补体固定。现有的结构模型将与 Ig-μ 链的天冬酰胺 402 和 563 结合的 N-聚糖置于天然 IgM 的密集核心内。这些糖在分泌型 IgM 中也以高甘露糖状态存在,表明聚合会阻碍它们进入高尔基体加工酶。它们的缺失会改变聚合。在这里,我们研究了它们在缺乏 Cμ1 结构域(μ∆)的易聚集突变 μ 链命运之后的作用。我们的数据表明,缺乏 563 个聚糖的 μ∆(μ∆5)形成比 μ∆更大的细胞内聚集体,并且不会分泌。与 μ∆ 一样,它们隔离了 ERGIC-53,一种先前被证明可促进聚合的凝集素。相比之下,缺乏 402 个聚糖的 μ∆(μ∆4)仍然可溶于去污剂,并在 ER 中积累,双突变体(μ∆4-5)也是如此。这些结果表明,两个 C 末端 Ig-μ 聚糖通过与凝集素结合并作为天然聚合物中单个 IgM 亚基对齐的间隔物来塑造聚合依赖性聚集。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9bd3/5291101/5cf92e33e46d/srep41815-f1.jpg

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