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大鼠切牙成釉细胞中二肽基肽酶II活性的细胞化学定位

Cytochemical localization of dipeptidyl peptidase II activity in rat incisor tooth ameloblasts.

作者信息

Smid J R, Monsour P A, Rousseau E M, Young W G

机构信息

Department of Dentistry, University of Queensland, Australia.

出版信息

Anat Rec. 1992 Aug;233(4):493-503. doi: 10.1002/ar.1092330402.

Abstract

Dipeptidyl peptidase II (DPP II), E.C. 3.4.14.2, a serine class endopeptidase, is widely used as a lysosomal marker in cytochemical studies. To date most ultrastructural studies of ameloblasts use the presence of acid phosphatase activity to identify cellular organelles to be lysosomal. Using decalcified rat mandibles, with kidney tissue as a positive control, DPP II activity, was assessed with specific substrate Lysyl-alanine-4-methoxy-2-naphthylamide in ameloblasts at an ultrastructural level. Reaction product (RP) indicative of DPP II activity was observed only within lysosome-like organelles. These RP-labelled organelles were only localized in the supra- or para-nuclear regions of the ameloblasts, which corresponds with previous studies using acid phosphatase cytochemistry. However, in contrast with these studies, RP was not detected in the distal region of the ameloblasts, viz., in the Tomes' processes of the secretory ameloblasts or near the ruffled border in the maturation ameloblasts. The transitional ameloblasts were notable for the intensity of staining of their RP-labelled organelles. We propose that DPP II may have a role in programmed cell death which is thought to occur in this transition zone. Biochemical analysis of rat incisor enamel organ homogenates, indicated tissue fixation resulted in an 82% reduction in DPP II activity, although the specific activity of DPP II was not affected.

摘要

二肽基肽酶II(DPP II),酶学委员会编号为3.4.14.2,是一种丝氨酸类内切肽酶,在细胞化学研究中被广泛用作溶酶体标记物。迄今为止,大多数成釉细胞的超微结构研究利用酸性磷酸酶活性的存在来鉴定溶酶体细胞器。以脱钙大鼠下颌骨为材料,以肾组织作为阳性对照,在超微结构水平上用特异性底物赖氨酰 - 丙氨酸 - 4 - 甲氧基 - 2 - 萘酰胺评估成釉细胞中的DPP II活性。仅在类溶酶体细胞器内观察到指示DPP II活性的反应产物(RP)。这些RP标记的细胞器仅定位于成釉细胞的核上或核旁区域,这与先前使用酸性磷酸酶细胞化学的研究结果一致。然而,与这些研究不同的是,在成釉细胞的远端区域,即分泌期成釉细胞的托姆斯突或成熟期成釉细胞的皱褶缘附近未检测到RP。过渡性成釉细胞以其RP标记细胞器的染色强度而引人注目。我们认为DPP II可能在程序性细胞死亡中起作用,而程序性细胞死亡被认为发生在这个过渡区。大鼠切牙釉质器官匀浆的生化分析表明,组织固定导致DPP II活性降低了82%,尽管DPP II的比活性未受影响。

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