School of Life Science and Technology, W3-42, Tokyo Institute of Technology, O-okayama 2-12-1, Meguro-ku, Tokyo 152-8551, Japan.
National Institute of Information and Communications Technology, 4-2-1, Nukui-Kitamachi, Koganei, Tokyo 184-8795, Japan.
Mar Drugs. 2023 Feb 23;21(3):140. doi: 10.3390/md21030140.
The catch connective, or mutable collagenous, tissue of echinoderms changes its mechanical properties in response to stimulation. The body wall dermis of sea cucumbers is a typical catch connective tissue. The dermis assumes three mechanical states: soft, standard, and stiff. Proteins that change the mechanical properties have been purified from the dermis. Tensilin and the novel stiffening factor are involved in the soft to standard and standard to stiff transitions, respectively. Softenin softens the dermis in the standard state. Tensilin and softenin work directly on the extracellular matrix (ECM). This review summarizes the current knowledge regarding such stiffeners and softeners. Attention is also given to the genes of tensilin and its related proteins in echinoderms. In addition, we provide information on the morphological changes of the ECM associated with the stiffness change of the dermis. Ultrastructural study suggests that tensilin induces an increase in the cohesive forces with the lateral fusion of collagen subfibrils in the soft to standard transition, that crossbridge formation between fibrils occurs in both the soft to standard and standard to stiff transitions, and that the bond which accompanies water exudation produces the stiff dermis from the standard state.
棘皮动物的连接组织或可变性胶原组织会根据刺激改变其机械性能。海参的体壁真皮是一种典型的连接组织。真皮有三种机械状态:软、标准和硬。已经从真皮中分离出改变机械性能的蛋白质。Tensilin 和新型僵硬因子分别参与软到标准和标准到硬的转变。Softenin 在标准状态下使真皮变软。Tensilin 和 Softenin 直接作用于细胞外基质(ECM)。这篇综述总结了关于这些增硬剂和软化剂的最新知识。此外,我们还介绍了棘皮动物中 tensilin 及其相关蛋白的基因信息。此外,我们还提供了与真皮硬度变化相关的 ECM 形态变化的信息。超微结构研究表明,在软到标准的转变中,Tensilin 通过胶原亚纤维的侧向融合诱导粘聚力增加,在软到标准和标准到硬的转变中都发生纤维间桥形成,伴随水渗出的键从标准状态产生坚硬的真皮。