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犬肥大细胞糜蛋白酶的扩展底物识别谱揭示了其与人类糜蛋白酶的相似性和差异性。

The extended substrate recognition profile of the dog mast cell chymase reveals similarities and differences to the human chymase.

机构信息

Department of Cell and Molecular Biology, Biomedical Centre, Uppsala University, Sweden.

出版信息

Int Immunol. 2010 Jun;22(6):421-31. doi: 10.1093/intimm/dxq021. Epub 2010 Mar 25.

Abstract

Human chymase (HC) constitutes a major granule protease in one of the two human mast cell (MC) types. The main biological role of this haematopoietic serine protease is probably not yet known, although it has been implicated in a large number of functions. Dogs, like humans, have only one chymase. This enzyme is closely related to its human homologue, and the MC subtypes of human and dog appear to be similar as well. Therefore, the functions of the dog chymase (DC) may closely reflect the functions of the HC. Moreover, dogs may serve as good models for studies of human MC functions and MC-related diseases. To reveal functional similarities and differences between the DC and HC, we have determined the extended cleavage specificity of the DC by substrate phage display. This method allows the simultaneous permutation of primed and unprimed substrate positions. The DC was found to have very similar preferences to its human counterpart for substrate positions P1, P3, P4 and P3', whereas their preferences differ at positions P2, P1' and P2'. Therefore, the HC and DC may have co-evolved with a substrate where positions P1, P3, P4 and P3' are conserved between dogs and humans, whereas positions P2 and P1' are not and P2'differs to a minor extent. The differences observed between these two enzymes suggest that results obtained from dog models cannot be directly extrapolated to human clinical settings but need to be evaluated carefully concerning potential differences in substrate preferences.

摘要

人糜酶(HC)构成了两种人类肥大细胞(MC)类型之一的主要颗粒蛋白酶。这种造血性丝氨酸蛋白酶的主要生物学作用可能尚不清楚,尽管它与许多功能有关。狗和人类一样,只有一种糜酶。这种酶与人同源物密切相关,而且人类和狗的 MC 亚型似乎也相似。因此,狗糜酶(DC)的功能可能密切反映了 HC 的功能。此外,狗可能是研究人类 MC 功能和与 MC 相关疾病的良好模型。为了揭示 DC 和 HC 之间的功能相似性和差异性,我们通过底物噬菌体展示确定了 DC 的扩展切割特异性。这种方法允许同时排列引物和未引物的底物位置。发现 DC 对底物位置 P1、P3、P4 和 P3'的偏好与人类同源物非常相似,而在位置 P2、P1'和 P2'的偏好则不同。因此,HC 和 DC 可能与一种底物共同进化,在狗和人类之间,位置 P1、P3、P4 和 P3'是保守的,而位置 P2 和 P1'则不是,位置 P2'略有不同。这两种酶之间观察到的差异表明,从狗模型中获得的结果不能直接外推到人类临床环境,而是需要仔细评估潜在的底物偏好差异。

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