Cisternas Felipe A, Vincent John B, Scherer Stephen W, Ray Peter N
Department of Molecular and Medical Genetics, University of Toronto, Toronto, Ontario, Canada.
Genomics. 2003 Mar;81(3):279-91. doi: 10.1016/s0888-7543(02)00040-x.
The recent identification of some of the components involved in regulated and constitutive exocytotic pathways has yielded important insights into the mechanisms of membrane trafficking and vesicle secretion. To understand precisely the molecular events taking place during vesicle exocytosis, we must identify all of the proteins implicated in these pathways. In this paper we describe the full-length cloning and characterization of human CADPS and CADPS2, two new homologs of the mouse Cadps protein involved in large dense-core vesicle (LDCV)-regulated exocytosis. We show that these two genes have disparate RNA expression patterns, with CADPS restricted to neural and endocrine tissues and CADPS2 expressed ubiquitously. We also identify a C2 domain, a known protein motif involved in calcium and phospholipid interactions, in both CADPS and CADPS2. We propose that CADPS functions as a calcium sensor in regulated exocytosis, whereas CADPS2 acts as a calcium sensor in constitutive vesicle trafficking and secretion. CADPS and CADPS2 were determined to span 475 kb and 561 kb on human chromosomes 3p21.1 and 7q31.3, respectively. The q31-q34 of human chromosome 7 has recently been identified to contain a putative susceptibility locus for autism (AUTS1). The function, expression profile, and location of CADPS2 make it a candidate gene for autism, and thus we conducted mutation screening for all 28 exons in 90 unrelated autistic individuals. We identified several nucleotide substitutions, including only one that would affect the amino acid sequence. No disease-specific variants were identified.
最近对参与调节性和组成性胞吐途径的一些成分的鉴定,为膜运输和囊泡分泌机制提供了重要见解。为了精确了解囊泡胞吐过程中发生的分子事件,我们必须鉴定出这些途径中涉及的所有蛋白质。在本文中,我们描述了人CADPS和CADPS2的全长克隆及特性,它们是参与大致密核心囊泡(LDCV)调节性胞吐的小鼠Cadps蛋白的两个新同源物。我们表明这两个基因具有不同的RNA表达模式,CADPS局限于神经和内分泌组织,而CADPS2广泛表达。我们还在CADPS和CADPS2中鉴定出一个C2结构域,这是一种已知的参与钙和磷脂相互作用的蛋白质基序。我们提出CADPS在调节性胞吐中作为钙传感器发挥作用,而CADPS2在组成性囊泡运输和分泌中作为钙传感器发挥作用。CADPS和CADPS2分别定位于人类染色体3p21.1和7q31.3上,跨度分别为475 kb和561 kb。人类染色体7的q31-q34最近被确定含有一个假定的自闭症易感基因座(AUTS1)。CADPS2的功能、表达谱和定位使其成为自闭症的候选基因,因此我们对90名无亲缘关系的自闭症个体的所有28个外显子进行了突变筛查。我们鉴定出了几个核苷酸替换,其中只有一个会影响氨基酸序列。未发现疾病特异性变体。