Pesch Yanina-Yasmin, Riedel Dietmar, Behr Matthias
Institute for Biology and Sächsischer Inkubator für klinische Translation (TRM/SIKT), University of Leipzig, 04103 Leipzig, Germany; Life & Medical Sciences Institute (LIMES), University of Bonn, 53115 Bonn, Germany.
Max Planck Institute for Biophysical Chemistry, Electron Microscopy Group, 37077 Göttingen, Germany.
Arthropod Struct Dev. 2017 Jan;46(1):4-12. doi: 10.1016/j.asd.2016.11.002. Epub 2016 Nov 19.
The architecture of the outer body wall cuticle is fundamental to protect arthropods against invading pathogens and numerous other harmful stresses. Such robust cuticles are formed by parallel running chitin microfibrils. Molting and also local wounding leads to dynamic assembly and disassembly of the chitin-matrix throughout development. However, the underlying molecular mechanisms that organize proper chitin-matrix formation are poorly known. Recently we identified a key region for cuticle thickening at the apical cell surface, the cuticle assembly zone, where Obstructor-A (Obst-A) coordinates the formation of the chitin-matrix. Obst-A binds chitin and the deacetylase Serpentine (Serp) in a core complex, which is required for chitin-matrix maturation and preservation. Here we present evidence that Chitinase 2 (Cht2) could be essential for this molecular machinery. We show that Cht2 is expressed in the chitin-matrix of epidermis, trachea, and the digestive system. There, Cht2 is enriched at the apical cell surface and the dense chitin-matrix. We further show that in Cht2 knockdown larvae the assembly zone is rudimentary, preventing normal cuticle formation and pore canal organization. As sequence similarities of Cht2 and the core complex proteins indicate evolutionarily conserved molecular mechanisms, our findings suggest that Cht2 is involved in chitin formation also in other insects.
昆虫体表角质层的结构对于保护节肢动物抵御入侵病原体和众多其他有害压力至关重要。这种坚固的角质层由平行排列的几丁质微纤维构成。在整个发育过程中,蜕皮以及局部创伤会导致几丁质基质的动态组装和解聚。然而,组织几丁质基质正确形成的潜在分子机制却鲜为人知。最近,我们在顶端细胞表面确定了一个角质层增厚的关键区域,即角质层组装区,在那里阻碍物 -A(Obst -A)协调几丁质基质的形成。Obst -A在一个核心复合物中与几丁质和脱乙酰酶蛇纹蛋白(Serp)结合,这是几丁质基质成熟和维持所必需的。在此,我们提供证据表明几丁质酶2(Cht2)可能对这一分子机制至关重要。我们发现Cht2在表皮、气管和消化系统的几丁质基质中表达。在那里,Cht2在顶端细胞表面和致密的几丁质基质中富集。我们进一步表明,在Cht2基因敲低的幼虫中,组装区发育不全,阻碍了正常角质层的形成和孔道组织。由于Cht2与核心复合物蛋白的序列相似性表明存在进化上保守的分子机制,我们的研究结果表明Cht2在其他昆虫的几丁质形成过程中也发挥作用。