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Carbonic anhydrase generates a pH gradient in Bombyx mori silk glands

机译:碳酸酐酶在家蚕丝腺体中产生pH梯度

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摘要

Silk is a protein of interest to both biological and industrial sciences. The silkworm, Bombyx mori, forms this protein into strong threads starting from soluble silk proteins using a number of biochemical and physical cues to allow the transition from liquid to fibrous silk. A pH gradient has been measured along the gland, but the methodology employed was not able to precisely determine the pH at specific regions of interest in the silk gland. Furthermore, the physiological mechanisms responsible for the generation of this pH gradient are unknown.In this study, concentric ion selective microelectrodes were used to determine the luminal pH of Bombyx mori silk glands. A gradient from pH 8.2 to 7.2 was measured in the posterior silk gland, with a pH 7 throughout the middle silk gland, and a gradient from pH 6.8 to 6.2 in the beginning of the anterior silk gland where silk processing into fibers occurs. The small diameter of the most anterior region of the anterior silk gland prevented microelectrode access in this region. Using a histochemical method, the presence of active carbonic anhydrase was identified in the funnel and anterior silk gland of fifth instar larvae. The observed pH gradient collapsed upon addition of the carbonic anhydrase inhibitor methazolamide, confirming an essential role for this enzyme in pH regulation in the Bombyx mori silk gland. Plastic embedding of whole silk glands allowed clear visualization of the morphology, including the identification of four distinct epithelial cell types in the gland and allowed correlations between silk gland morphology and silk stages of assembly related to the pH gradient.Bombyx mori silk glands have four different epithelial cell types, one of which produces carbonic anhydrase. Carbonic anhydrase is necessary for the mechanism that generates an intraluminal pH gradient, which likely regulates the assembly of silk proteins and then the formation of fibers from soluble silk proteins. These new insights into native silk formation may lead to a more efficient production of artificial or regenerated silkworm silk fibers.
机译:丝绸是生物学和工业科学都感兴趣的蛋白质。家蚕(Bombyx mori)利用多种生化和物理线索,从可溶性蚕丝蛋白开始将这种蛋白质形成强力丝线,从而允许其从液态蚕丝转变为纤维蚕丝。已经沿着腺体测量了pH梯度,但是所采用的方法无法精确确定丝绸腺体中特定目标区域的pH值。此外,尚不知道造成此pH梯度的生理机制。在这项研究中,使用同心离子选择性微电极确定家蚕丝腺的管腔pH。在后部丝腺中测得的pH值为8.2至7.2,整个中部丝腺中的pH值为7,在前丝腺开始处的pH值为6.8至6.2,在此过程中蚕丝被加工成纤维。前丝腺最前区域的小直径阻止了该区域中的微电极进入。使用组织化学方法,在第五龄幼虫的漏斗和前丝腺中鉴定出活性碳酸酐酶的存在。加入碳酸酐酶抑制剂甲唑酰胺后,观察到的pH梯度下降,从而证实了该酶在桑蚕丝腺pH调节中的重要作用。全丝腺的塑料包埋可以清楚地观察其形态,包括识别腺体中四种不同的上皮细胞类型,并允许丝腺形态与与pH梯度相关的组装阶段之间的相关性。上皮细胞类型,其中一种产生碳酸酐酶。碳酸酐酶是产生管腔内pH梯度的机制所必需的,该机制可能调节丝蛋白的组装,然后调节可溶性丝蛋白形成的纤维。这些对天然蚕丝形成的新见解可能会导致更有效地生产人工或再生的蚕丝纤维。

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