Lovejoy David A, Pavlović Téa
Horm Mol Biol Clin Investig. 2015 Nov;24(2):83-90. doi: 10.1515/hmbci-2015-0032.
In humans, the teneurin gene family consists of four highly conserved paralogous genes that are the result of early vertebrate gene duplications arising from a gene introduced into multicellular organisms from a bacterial ancestor. In vertebrates and humans, the teneurins have become integrated into a number of critical physiological systems including several aspects of reproductive physiology. Structurally complex, these genes possess a sequence in their terminal exon that encodes for a bioactive peptide sequence termed the 'teneurin C-terminal associated peptide' (TCAP). The teneurin/TCAP protein forms an intercellular adhesive unit with its receptor, latrophilin, an Adhesion family G-protein coupled receptor. It is present in numerous cell types and has been implicated in gamete migration and gonadal morphology. Moreover, TCAP is highly effective at reducing the corticotropin-releasing factor (CRF) stress response. As a result, TCAP may also play a role in regulating the stress-associated inhibition of reproduction. In addition, the teneurins and TCAP have been implicated in tumorigenesis associated with reproductive tissues. Therefore, the teneurin/TCAP system may offer clinicians a novel biomarker system upon which to diagnose some reproductive pathologies.
在人类中,teneurin基因家族由四个高度保守的旁系同源基因组成,这些基因是早期脊椎动物基因复制的结果,而这种复制源于一个从细菌祖先引入多细胞生物的基因。在脊椎动物和人类中,teneurin已融入许多关键的生理系统,包括生殖生理的多个方面。这些基因结构复杂,在其末端外显子中拥有一段序列,该序列编码一种名为“teneurin C末端关联肽”(TCAP)的生物活性肽序列。teneurin/TCAP蛋白与其受体latrophilin(一种粘附家族G蛋白偶联受体)形成细胞间粘附单元。它存在于多种细胞类型中,并与配子迁移和性腺形态有关。此外,TCAP在减轻促肾上腺皮质激素释放因子(CRF)应激反应方面非常有效。因此,TCAP在调节与应激相关的生殖抑制方面可能也发挥作用。此外,teneurin和TCAP与生殖组织相关的肿瘤发生有关。因此,teneurin/TCAP系统可能为临床医生提供一种新型生物标志物系统,用于诊断某些生殖系统疾病。