Kwon B S, Kestler D, Lee E, Wakulchik M, Young J D
Laboratory of Molecular Genetics, Guthrie Research Institute, Sayre, Pennsylvania 18840.
J Exp Med. 1988 Nov 1;168(5):1839-54. doi: 10.1084/jem.168.5.1839.
Three new cDNA clones (designated MCSP-1, MCSP-2, and MCSP-3) encoding mouse serine proteases were isolated from cloned cytolytic T lymphocytes (CTL) by a modified differential screening procedure. The putative mature proteins of MCSP-2 and MCSP-3 are each composed of 228 amino acids with molecular weights of 25,477 and 25,360, respectively. NH2-terminal amino acids of MCSP-2- and MCSP-3-predicted proteins were identical to those reported for granzyme E and F, respectively. The third species, MCSP-1, was closely related to the two other cDNA species but approximately 30 amino acids equivalents of the NH2-terminal portion of the cDNA were not cloned. The amino acids forming the active sites of serine proteases were well conserved among the three predicted proteins. The active site pocket residue positioned six residues before the active-site Ser184 is alanine in MCSP-1, threonine in MCSP-2, and serine in MCSP-3, indicating that both MCSP-2 and MCSP-3 may have chymotrypsin-like specificity. There are three potential asparagine-linked glycosylation sites in MCSP-1 and MCSP-3, and four in MCSP-2-deduced amino acid sequences. Amino acid comparison of MCSP-1 with four other reported serine proteases whose active site pocket residue is alanine revealed that MCSP-1 was substantially different from the other molecules, indicating that MCSP-1 may be a new member of mouse T cell serine protease family. Antibodies made against a MCSP-1 lacZ gene fusion protein stain granules of CTL and react on immunoblots with two distinct granule protein bands of 29 and 35-40 kD. Only the 35-kD species labels with [3H]DFP. Since a protease cascade may play a key role in cytolytic lymphocyte activation, our isolation of cDNAs representative of unique serine esterases should help to investigate such a cascade process.
通过改良的差异筛选程序,从克隆的细胞毒性T淋巴细胞(CTL)中分离出三个编码小鼠丝氨酸蛋白酶的新cDNA克隆(命名为MCSP-1、MCSP-2和MCSP-3)。MCSP-2和MCSP-3的推定成熟蛋白均由228个氨基酸组成,分子量分别为25,477和25,360。MCSP-2和MCSP-3预测蛋白的氨基末端氨基酸分别与颗粒酶E和F报道的氨基酸相同。第三个种类MCSP-1与其他两个cDNA种类密切相关,但cDNA氨基末端部分约30个氨基酸当量未被克隆。在三种预测蛋白中,形成丝氨酸蛋白酶活性位点的氨基酸高度保守。在活性位点Ser184之前六个残基处的活性位点口袋残基,在MCSP-1中是丙氨酸,在MCSP-2中是苏氨酸,在MCSP-3中是丝氨酸,这表明MCSP-2和MCSP-3可能都具有胰凝乳蛋白酶样特异性。在MCSP-1和MCSP-3中有三个潜在的天冬酰胺连接的糖基化位点,在MCSP-2推导的氨基酸序列中有四个。MCSP-1与其他四个报道的活性位点口袋残基为丙氨酸的丝氨酸蛋白酶的氨基酸比较表明,MCSP-1与其他分子有很大不同,这表明MCSP-1可能是小鼠T细胞丝氨酸蛋白酶家族的一个新成员。针对MCSP-1 lacZ基因融合蛋白制备的抗体可使CTL的颗粒着色,并在免疫印迹上与两条分别为29 kD和35 - 40 kD的不同颗粒蛋白带发生反应。只有35-kD的种类能用[3H]DFP标记。由于蛋白酶级联反应可能在细胞毒性淋巴细胞激活中起关键作用,我们对代表独特丝氨酸酯酶的cDNA的分离应该有助于研究这样一个级联过程。