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几丁质和表皮蛋白在蚕的纺丝管中形成表皮层。

Chitin and cuticle proteins form the cuticular layer in the spinning duct of silkworm.

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China; Biological Science Research Center, Southwest University, Chongqing 400716, China; Chongqing Engineering and Technology Research Center for Novel Silk Materials, Southwest University, Chongqing 400716, China; Chongqing Key Laboratory of Sericulture, Southwest University, Chongqing 400716, China.

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing 400716, China; Biological Science Research Center, Southwest University, Chongqing 400716, China; Chongqing Engineering and Technology Research Center for Novel Silk Materials, Southwest University, Chongqing 400716, China; Chongqing Key Laboratory of Sericulture, Southwest University, Chongqing 400716, China.

出版信息

Acta Biomater. 2022 Jun;145:260-271. doi: 10.1016/j.actbio.2022.03.043. Epub 2022 Mar 30.

Abstract

Chitin is found in the exoskeleton and peritrophic matrix of arthropods, but recent studies have also identified chitin in the spinning duct of silk-spinning arthropods. Here, we report the presence and function of chitin and cuticle proteins ASSCP1 and ASSCP2 in the spinning duct of silkworm. We show that chitin and these proteins are co-located in the cuticular layer of the spinning duct. Ultrastructural analysis indicates that the cuticular layer has a multilayer structure by layered stacking of the chitin laminae. After knocking down ASSCP1 and ASSCP2, the fine structure of this layer was disrupted, which had negative impacts on the mechanical properties of silk. This work clarifies the function of chitin in the spinning duct of silkworm. Chitin and cuticle proteins are the main components of the cuticular layer, providing the shearing stress during silk fibrillogenesis and regulating the final mechanical properties of silk. STATEMENT OF SIGNIFICANCE: Recent studies have identified chitin in the spinning duct of silk-spinning arthropods. However, the role of chitin in this specific organ remains unclear. This study reports that chitin and cuticle proteins form the cuticular layer, a unique structure of the spinning duct of silkworm. This layer with a precise laminate structure gives the spinning duct flexible properties, provides shearing forces for silk fibrillogenesis, and contributes to silk final mechanical properties. Our work clarifies the component, ultrastructure, and biological significance of the silkworm cuticular layer, describes the specific process of silk fiber formation, and proposes new molecular targets (chitin and cuticle proteins) for the improvement of animal silks.

摘要

几丁质存在于节肢动物的外骨骼和围食膜中,但最近的研究也在丝腺昆虫的纺丝管中发现了几丁质。在这里,我们报告了几丁质和表皮蛋白 ASSCP1 和 ASSCP2 在蚕的纺丝管中的存在和功能。我们表明,几丁质和这些蛋白质共同位于纺丝管的表皮层中。超微结构分析表明,表皮层具有多层结构,通过几丁质层的分层堆叠。在敲低 ASSCP1 和 ASSCP2 后,该层的精细结构被破坏,这对丝的机械性能产生了负面影响。这项工作阐明了几丁质在蚕的纺丝管中的功能。几丁质和表皮蛋白是表皮层的主要成分,为丝原纤维形成过程提供剪切应力,并调节丝的最终机械性能。意义声明:最近的研究在丝腺昆虫的纺丝管中发现了几丁质。然而,几丁质在这个特定器官中的作用尚不清楚。本研究报告称,几丁质和表皮蛋白形成了表皮层,这是蚕纺丝管的一个独特结构。这种具有精确层状结构的层赋予了纺丝管灵活的特性,为丝原纤维形成提供了剪切力,并有助于丝的最终机械性能。我们的工作阐明了蚕表皮层的成分、超微结构和生物学意义,描述了丝纤维形成的具体过程,并提出了动物丝改良的新分子靶标(几丁质和表皮蛋白)。

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