School of Life Sciences, Gwangju Institute of Science and Technology, Gwangju 500-712, Korea.
Nat Rev Urol. 2012 Oct;9(10):550-60. doi: 10.1038/nrurol.2012.167. Epub 2012 Aug 28.
The disintegrin and metalloprotease domain-containing protein (ADAM) family of multidomain membrane proteins comprises at least 34 members in mammals. More than half of these proteins are expressed specifically or predominantly in mammalian testes and epididymis, implying their prominence in male reproduction. These reproductive ADAMs can be classified into three phylogenetic groups; designated I, II, and III. Each group displays remarkably contrasting features. Group I contains 11 ADAMs expressed in the testis. The genes that encode these proteins lack introns in their coding sequences and most of the proteins are processed into prodomain-lacking forms in mature sperm. Five ADAMs--encoded by genes with multiple exons and introns--belong to phylogenetic group II. These ADAMs are also expressed in testicular germ cells, but both prodomains and metalloprotease domains are lacking in mature sperm. Two phylogenetic group III ADAMs are synthesized in the epididymis; one of which is secreted and transferred to the sperm surface. Some of these sperm ADAMs are assembled into potentially functional complexes, including ADAM1B-ADAM2, ADAM2-ADAM3-ADAM4, ADAM2-ADAM3-ADAM5, and ADAM2-ADAM3-ADAM6. It has been suggested that ADAM2 and ADAM3 have roles in sperm-egg interactions. Mouse knockout studies have revealed that the ADAM2-ADAM3 complex is critical for in vivo sperm migratory function in the female reproductive tract.
去整合素金属蛋白酶结构域蛋白(ADAM)家族是一类多结构域膜蛋白,哺乳动物中至少包含 34 个成员。这些蛋白中超过一半在睾丸和附睾中特异性或优势表达,提示其在雄性生殖中发挥重要作用。这些生殖 ADAM 可分为三个进化群,分别命名为 I、II 和 III。每群都显示出显著不同的特征。群 I 包含 11 个在睾丸中表达的 ADAM。编码这些蛋白的基因在其编码序列中没有内含子,大部分蛋白在成熟精子中被加工成无前导肽形式。属于多外显子和内含子基因的 5 个 ADAM 属于进化群 II。这些 ADAM 也在睾丸生殖细胞中表达,但成熟精子中既无前导肽也无金属蛋白酶结构域。两个进化群 III 的 ADAM 在附睾中合成;其中一个被分泌并转移到精子表面。这些精子 ADAM 中的一些组装成潜在功能复合物,包括 ADAM1B-ADAM2、ADAM2-ADAM3-ADAM4、ADAM2-ADAM3-ADAM5 和 ADAM2-ADAM3-ADAM6。有研究提示 ADAM2 和 ADAM3 在精子-卵子相互作用中发挥作用。小鼠敲除研究显示 ADAM2-ADAM3 复合物对体内精子在雌性生殖道中的迁移功能至关重要。