Fahnestock M
Department of Biomedical Sciences, McMaster University, Hamilton, Ontario, Canada.
DNA Cell Biol. 1994 Mar;13(3):293-300. doi: 10.1089/dna.1994.13.293.
Kallikreins comprise a family of serine proteases that are required for the processing of hormone precursors, thereby controlling many physiological processes including blood flow, ion transport, and inflammation. In rodents such as mouse, rat, and Mastomys, many kallikreins are expressed in the submandibular gland (SMG), but only a limited number, notably true tissue (glandular) kallikrein, are expressed in the kidney. We report here the cloning and characterization of kallikrein cDNAs from the Mastomys SMG. Two of these are expressed in the kidney as well as in the SMG, and one may code for the true tissue kallikrein of Mastomys. A third kallikrein is expressed only in the SMG and bears some resemblance to a murine nerve growth factor-associated protein. The existence of a family of Mastomys SMG kallikreins suggests that these enzymes act as prohormone-processing enzymes in Mastomys. DNA sequence analysis and hybridization studies demonstrate that, although Mastomys kallikreins are very similar in structure to both mouse and rat kallikreins, their expression patterns differ. The expression of more than one Mastomys glandular kallikrein in the kidney is similar to that in the rat, but the sequence and nonsexually dimorphic expression of the putative tissue kallikrein most closely resembles mouse. Mastomys represents an interesting hybrid between mouse and rat, providing an important animal model for studies of kallikrein expression and regulation.
激肽释放酶是丝氨酸蛋白酶家族,参与激素前体的加工过程,从而控制包括血流、离子转运和炎症在内的许多生理过程。在小鼠、大鼠和非洲巨鼠等啮齿动物中,许多激肽释放酶在下颌下腺(SMG)中表达,但在肾脏中仅表达有限数量的激肽释放酶,特别是真正的组织(腺)激肽释放酶。我们在此报告从非洲巨鼠SMG中克隆和鉴定激肽释放酶cDNA。其中两种在肾脏和SMG中均有表达,一种可能编码非洲巨鼠的真正组织激肽释放酶。第三种激肽释放酶仅在SMG中表达,与一种小鼠神经生长因子相关蛋白有一定相似性。非洲巨鼠SMG激肽释放酶家族的存在表明这些酶在非洲巨鼠中作为激素原加工酶发挥作用。DNA序列分析和杂交研究表明,尽管非洲巨鼠激肽释放酶在结构上与小鼠和大鼠激肽释放酶非常相似,但其表达模式不同。非洲巨鼠中不止一种腺激肽释放酶在肾脏中的表达与大鼠相似,但推定的组织激肽释放酶的序列和非性别二态性表达与小鼠最为相似。非洲巨鼠代表了小鼠和大鼠之间有趣的杂交品种,为激肽释放酶表达和调控研究提供了重要的动物模型。