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胰岛素样生长因子在味觉系统中表达,但并不维持成体味蕾。

Insulin-Like Growth Factors Are Expressed in the Taste System, but Do Not Maintain Adult Taste Buds.

作者信息

Biggs Bradley T, Tang Tao, Krimm Robin F

机构信息

Department of Anatomical Sciences and Neurobiology, University of Louisville, School of Medicine, Louisville, Kentucky 40202, United States of America.

出版信息

PLoS One. 2016 Feb 22;11(2):e0148315. doi: 10.1371/journal.pone.0148315. eCollection 2016.

Abstract

Growth factors regulate cell growth and differentiation in many tissues. In the taste system, as yet unknown growth factors are produced by neurons to maintain taste buds. A number of growth factor receptors are expressed at greater levels in taste buds than in the surrounding epithelium and may be receptors for candidate factors involved in taste bud maintenance. We determined that the ligands of eight of these receptors were expressed in the E14.5 geniculate ganglion and that four of these ligands were expressed in the adult geniculate ganglion. Of these, the insulin-like growth factors (IGF1, IGF2) were expressed in the ganglion and their receptor, insulin-like growth factor receptor 1 (IGF1R), were expressed at the highest levels in taste buds. To determine whether IGF1R regulates taste bud number or structure, we conditionally eliminated IGF1R from the lingual epithelium of mice using the keratin 14 (K14) promoter (K14-Cre::Igf1rlox/lox). While K14-Cre::Igf1rlox/lox mice had significantly fewer taste buds at P30 compared with control mice (Igf1rlox/lox), this difference was not observed by P80. IGF1R removal did not affect taste bud size or cell number, and the number of phospholipase C β2- (PLCβ2) and carbonic anhydrase 4- (Car4) positive taste receptor cells did not differ between genotypes. Taste buds at the back of the tongue fungiform taste field were larger and contained more cells than those at the tongue tip, and these differences were diminished in K14-Cre::Igf1rlox/lox mice. The epithelium was thicker at the back versus the tip of the tongue, and this difference was also attenuated in K14-Cre::Igf1rlox/lox mice. We conclude that, although IGFs are expressed at high levels in the taste system, they likely play little or no role in maintaining adult taste bud structure. IGFs have a potential role in establishing the initial number of taste buds, and there may be limits on epithelial thickness in the absence of IGF1R signaling.

摘要

生长因子在许多组织中调节细胞生长和分化。在味觉系统中,神经元会产生一些目前未知的生长因子来维持味蕾。许多生长因子受体在味蕾中的表达水平高于周围的上皮组织,可能是参与味蕾维持的候选因子的受体。我们确定这些受体中的8种配体在E14.5膝状神经节中表达,其中4种配体在成年膝状神经节中表达。其中,胰岛素样生长因子(IGF1、IGF2)在神经节中表达,它们的受体胰岛素样生长因子受体1(IGF1R)在味蕾中的表达水平最高。为了确定IGF1R是否调节味蕾数量或结构,我们使用角蛋白14(K14)启动子有条件地从小鼠舌上皮中消除IGF1R(K14-Cre::Igf1rlox/lox)。与对照小鼠(Igf1rlox/lox)相比,K14-Cre::Igf1rlox/lox小鼠在P30时的味蕾数量明显减少,但在P80时未观察到这种差异。去除IGF1R不影响味蕾大小或细胞数量,并且基因型之间磷脂酶Cβ2-(PLCβ2)和碳酸酐酶4-(Car4)阳性味觉受体细胞的数量没有差异。舌后菌状味觉区的味蕾比舌尖的味蕾更大且细胞更多,而这些差异在K14-Cre::Igf1rlox/lox小鼠中减小。舌后部的上皮比舌尖厚,这种差异在K14-Cre::Igf1rlox/lox小鼠中也减弱。我们得出结论,尽管IGF在味觉系统中高表达,但它们可能在维持成年味蕾结构中几乎不起作用或没有作用。IGF在建立味蕾的初始数量方面具有潜在作用,并且在缺乏IGF1R信号传导的情况下上皮厚度可能存在限制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a9be/4762545/65888451dd33/pone.0148315.g001.jpg

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