Masmoudi S, Antonarakis S E, Schwede T, Ghorbel A M, Gratri M, Pappasavas M P, Drira M, Elgaied-Boulila A, Wattenhofer M, Rossier C, Scott H S, Ayadi H, Guipponi M
Laboratoire de Génétique Moléculaire Humaine, Faculté de Médecine, Sfax, Tunisie.
Hum Mutat. 2001 Aug;18(2):101-8. doi: 10.1002/humu.1159.
Recently the TMPRSS3 gene, which encodes a transmembrane serine protease, was found to be responsible for two non-syndromic recessive deafness loci located on human chromosome 21q22.3, DFNB8 and DFNB10. We found evidence for linkage to the DFNB8/10 locus in two unrelated consanguineous Tunisian families segregating congenital autosomal recessive sensorineural deafness. The audiometric tests showed a loss of hearing greater than 70 dB, in all affected individuals of both families. Mutation screening of TMPRSS3 revealed two novel missense mutations, W251C and P404L, altering highly conserved amino acids of the serine protease domain. Both mutations were not found in 200 control Tunisian chromosomes. The detection of naturally-occurring TMPRSS3 missense mutations in deafness families identifies functionally important amino acids. Comparative protein modeling of the TMPRSS3 protease domain predicted that W251C might lead to a structural rearrangement affecting the active site H257 and that P404L might alter the geometry of the active site loop and therefore affect the serine protease activity.
最近,编码跨膜丝氨酸蛋白酶的TMPRSS3基因被发现与位于人类21号染色体21q22.3上的两个非综合征性隐性耳聋位点DFNB8和DFNB10有关。我们在两个不相关的突尼斯近亲家庭中发现了与DFNB8/10位点连锁的证据,这两个家庭中先天性常染色体隐性感音神经性耳聋呈分离状态。听力测试显示,两个家庭中所有受影响个体的听力损失均大于70分贝。TMPRSS3的突变筛查发现了两个新的错义突变,W251C和P404L,它们改变了丝氨酸蛋白酶结构域中高度保守的氨基酸。在200条突尼斯对照染色体中均未发现这两种突变。在耳聋家庭中检测到自然发生的TMPRSS3错义突变,确定了功能上重要的氨基酸。TMPRSS3蛋白酶结构域的比较蛋白质建模预测,W251C可能导致影响活性位点H257的结构重排,而P404L可能改变活性位点环的几何形状,从而影响丝氨酸蛋白酶的活性。
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