Wei L, Alhenc-Gelas F, Soubrier F, Michaud A, Corvol P, Clauser E
U. 36 Institut National de la Santé et de la Recherche Médicale, Collège de France, Paris.
J Biol Chem. 1991 Mar 25;266(9):5540-6.
Chinese hamster ovary (CHO) cells have been transfected with either a full-length cDNA encoding human angiotensin I-converting enzyme (kininase II; EC 3.4.15.1) (ACE) or a mutated cDNA, in which the last C-terminal 47 amino acids, including the putative transmembrane domain, are not translated. Cell lines expressing high levels of the wild-type ACE or the mutant were established. The cells transfected with the wild-type cDNA (CHO-ACE) express a membrane-bound ectoenzyme with an intracellular C terminus, as shown by indirect immunofluorescence using an antiserum (28A7) raised against a synthetic peptide corresponding to the deduced C terminus of ACE. This enzyme is structurally, immunologically, and enzymatically identical to human kidney ACE. In addition, CHO-ACE cells also produce a secreted form of the enzyme. Neither this secreted form nor the enzyme purified from human plasma is recognized by the antiserum 28A7, indicating that they undergo a truncation in the C-terminal region. On the other hand, the transfected cells expressing the C-terminally truncated mutant (CHO-ACE delta COOH) do not retain ACE in the plasma membrane, but secrete it into the medium. These results indicate that ACE is anchored to the plasma membrane by the predicted C-terminal transmembrane domain, and the secreted form is derived from the membrane-bound form by a post-translational proteolytic cleavage of the C-terminal region.
中国仓鼠卵巢(CHO)细胞已被转染了编码人血管紧张素I转换酶(激肽酶II;EC 3.4.15.1)(ACE)的全长cDNA或一种突变的cDNA,其中包括假定跨膜结构域的最后47个C末端氨基酸未被翻译。建立了表达高水平野生型ACE或突变体的细胞系。用野生型cDNA转染的细胞(CHO-ACE)表达一种细胞内C末端的膜结合胞外酶,这通过使用针对与ACE推导的C末端相对应的合成肽产生的抗血清(28A7)进行间接免疫荧光显示。这种酶在结构、免疫和酶学上与人肾ACE相同。此外,CHO-ACE细胞还产生该酶的分泌形式。抗血清28A7均未识别这种分泌形式或从人血浆中纯化的酶,这表明它们在C末端区域发生了截短。另一方面,表达C末端截短突变体的转染细胞(CHO-ACE delta COOH)不在质膜中保留ACE,而是将其分泌到培养基中。这些结果表明,ACE通过预测的C末端跨膜结构域锚定在质膜上,并且分泌形式是通过C末端区域的翻译后蛋白水解切割从膜结合形式衍生而来的。