首页> 外文期刊>Peptides: An International Journal >Cathepsin L plays a major role in cholecystokinin production in mouse brain cortex and in pituitary AtT-20 cells: protease gene knockout and inhibitor studies.
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Cathepsin L plays a major role in cholecystokinin production in mouse brain cortex and in pituitary AtT-20 cells: protease gene knockout and inhibitor studies.

机译:组织蛋白酶L在小鼠大脑皮层和垂体AtT-20细胞的胆囊收缩素产生中起主要作用:蛋白酶基因敲除和抑制剂研究。

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Cholecystokinin (CCK) is a peptide neurotransmitter whose production requires proteolytic processing of the proCCK precursor to generate active CCK8 neuropeptide in brain. This study demonstrates the significant role of the cysteine protease cathepsin L for CCK8 production. In cathepsin L knockout (KO) mice, CCK8 levels were substantially reduced in brain cortex by an average of 75%. To evaluate the role of cathepsin L in producing CCK in the regulated secretory pathway of neuroendocrine cells, pituitary AtT-20 cells that stably produce CCK were treated with the specific cathepsin L inhibitor, CLIK-148. CLIK-148 inhibitor treatment resulted in decreased amounts of CCK secreted from the regulated secretory pathway of AtT-20 cells. CLIK-148 also reduced cellular levels of CCK9 (Arg-CCK8), consistent with CCK9 as an intermediate product of cathepsin L, shown by the decreased ratio of CCK9/CCK8. The decreased CCK9/CCK8 ratio also suggests a shift in the production to CCK8 over CCK9 during inhibition of cathepsin L. During reduction of the PC1/3 processing enzyme by siRNA, the ratio of CCK9/CCK8 was increased, suggesting a shift to the cathepsin L pathway for the production of CCK9. The changes in ratios of CCK9 compared to CCK8 are consistent with dual roles of the cathepsin L protease pathway that includes aminopeptidase B to remove NH2-terminal Arg or Lys, and the PC1/3 protease pathway. These results suggest that cathepsin L functions as a major protease responsible for CCK8 production in mouse brain cortex, and participates with PC1/3 for CCK8 production in pituitary cells.
机译:胆囊收缩素(CCK)是一种肽类神经递质,其产生需要对proCCK前体进行蛋白水解处理才能在大脑中产生活性CCK8神经肽。这项研究证明了半胱氨酸蛋白酶组织蛋白酶L在CCK8生产中的重要作用。在组织蛋白酶L基因敲除(KO)小鼠中,大脑皮层中的CCK8水平平均降低了75%。为了评估组织蛋白酶L在神经内分泌细胞调节的分泌途径中产生CCK的作用,用特定的组织蛋白酶L抑制剂CLIK-148处理稳定产生CCK的垂体AtT-20细胞。 CLIK-148抑制剂治疗导致从AtT-20细胞的调节分泌途径分泌的CCK量减少。 CLIK-148还降低了CCK9(Arg-CCK8)的细胞水平,与作为组织蛋白酶L中间产物的CCK9一致,这表明CCK9 / CCK8的比例降低。降低的CCK9 / CCK8比值还表明在抑制组织蛋白酶L期间,与CCK9相比,CCK8的生成发生了转移。在siRNA降低PC1 / 3加工酶的过程中,CCK9 / CCK8的比值增加,表明向组织蛋白酶的转移用于产生CCK9的L途径。与CCK8相比,CCK9比率的变化与组织蛋白酶L蛋白酶途径(其中包括用于去除NH2末端Arg或Lys的氨基肽酶B)和PC1 / 3蛋白酶途径的双重作用一致。这些结果表明组织蛋白酶L充当负责在小鼠脑皮质中产生CCK8的主要蛋白酶,并与PC1 / 3参与垂体细胞中CCK8的产生。

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