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β-Sheet Nanocrystalline Domains Formed from Phosphorylated Serine-Rich Motifs in Caddisfly Larval Silk: A Solid State NMR and XRD Study

机译:Caddisfly幼虫丝中磷酸化富含丝氨酸的母体形成的β-Sheet纳米晶域:固态NMR和XRD研究

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Adhesive silks spun by aquatic caddisfly (order Trichoptera) larvae are used to build both intricate protective shelters and food harvesting nets underwater. In this study, we use ~(13)C and ~(31)P solid-state NMR and wide angle X-ray diffraction (WAXD) as tools to elucidate molecular protein structure of caddisfly larval silk from the species Hesperophylax consimilis, Caddisfly larval silk is a fibroin protein based biopolymer containing mostly repetitive amino acid motifs. NMR and X-ray results provide strong supporting evidence for a structural model in which phosphorylated serine repeats (pSX)4 complex with divalent cations Ca~(2+) and Mg~(2+) to form rigid nanocrystalline β-sheet structures in caddisfly silk. ~(13)C NMR data suggests that both phosphorylated serine and neighboring valine residues exist in a β-sheet conformation while glycine and leucine residues common in GGX repeats likely reside in random coil conformations. Additionally, ~(31)P chemical shift anisotropy (CSA) analysis indicates that the phosphates on phosphoserine residues are doubly ionized, and are charge-stabilized by divalent cations. Positively charged arginine side chains also likely play a role in charge stabilization. Finally, WAXD results finds that the silk is at least 7—8% crystalline, with β-sheet interplane spacings of 3.7 and 4.5 A.
机译:由水生鳞翅目幼虫(Trichoptera幼虫)纺制的粘合丝用于在水下建造复杂的防护罩和食物收集网。在这项研究中,我们使用〜(13)C和〜(31)P固态NMR和广角X射线衍射(WAXD)作为工具来阐明印度杂种,杂种,Caddisfly幼虫的蝇幼虫丝的分子蛋白质结构。蚕丝是一种基于纤维蛋白蛋白质的生物聚合物,主要包含重复的氨基酸基序。 NMR和X射线结果为结构模型提供了强有力的支持证据,在该结构模型中,磷酸化丝氨酸重复(pSX)4与二价阳离子Ca〜(2+)和Mg〜(2+)形成线虫的刚性纳米晶β-折叠结构。丝。 〜(13)C NMR数据表明,磷酸化的丝氨酸残基和邻近的缬氨酸残基均存在于β-折叠构象中,而GGX重复序列中常见的甘氨酸和亮氨酸残基可能存在于随机卷曲构象中。此外,〜(31)P化学位移各向异性(CSA)分析表明,磷酸丝氨酸残基上的磷酸盐被双重离子化,并被二价阳离子稳定。带正电荷的精氨酸侧链也可能在电荷稳定中起作用。最终,WAXD结果发现,该丝至少为7-8%的晶体,β片层间的间距为3.7和4.5A。

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