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钙化提供了机械强化作用到鲸鱼须的α-角蛋白。

Calcification provides mechanical reinforcement to whale baleen alpha-keratin.

机构信息

Department of Integrative Biology, University of Guelph, 50 Stone Road East, Guelph, Ontario, Canada.

出版信息

Proc Biol Sci. 2010 Sep 7;277(1694):2597-605. doi: 10.1098/rspb.2010.0399. Epub 2010 Apr 14.

Abstract

Hard alpha-keratins such as hair, nail, wool and horn are stiff epidermal appendages used by mammals in a variety of functions including thermoregulation, feeding and intraspecific competition. Hard alpha-keratins are fibre-reinforced structures consisting of cytoskeletal elements known as 'intermediate filaments' embedded in an amorphous protein matrix. Recent research has shown that intermediate filaments are soft and extensible in living keratinocytes but become far stiffer and less extensible in keratinized cells, and this stiffening may be mediated by air-drying. Baleen, the keratinous plates used by baleen whales during filter feeding, is an unusual mammalian keratin in that it never air dries, and in some species, it represents the most heavily calcified of all the hard alpha-keratins. We therefore tested the hypothesis that whale baleen is stiffened by calcification. Here, we provide, to our knowledge, the first comprehensive description of baleen material properties and show that calcification contributes to overcoming the shortcomings of stiffening this hard alpha-keratin without the benefit of air-drying. We also demonstrate striking interspecies differences in the calcification patterns among three species of baleen whales and provide novel insights into the function and evolution of this unusual biomaterial.

摘要

硬角蛋白,如毛发、指甲、羊毛和角,是哺乳动物用于各种功能的硬表皮附属物,包括体温调节、进食和种内竞争。硬角蛋白是纤维增强结构,由称为“中间丝”的细胞骨架元素组成,嵌入无定形蛋白质基质中。最近的研究表明,中间丝在活角质细胞中柔软且具有伸展性,但在角质化细胞中变得硬得多且伸展性差,这种变硬可能是由风干介导的。须鲸在过滤进食时使用的鲸须,是一种不寻常的哺乳动物角蛋白,因为它从不风干,而且在某些物种中,它代表了所有硬角蛋白中钙化最严重的一种。因此,我们检验了这样一个假设,即鲸须的钙化使其变硬。在这里,我们提供了(据我们所知)有关鲸须材料特性的第一个全面描述,并表明钙化有助于克服不经过风干而使这种硬角蛋白变硬的缺点。我们还展示了三种须鲸的钙化模式存在显著的种间差异,并为这种不寻常生物材料的功能和进化提供了新的见解。

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