Schmoker Anna M, Weinert Jaye L, Markwood Jacob M, Albretsen Kathryn S, Lunde Michelle L, Weir Marion E, Ebert Alicia M, Hinkle Karen L, Ballif Bryan A
Department of Biology, University of Vermont, Marsh Life Sciences, Burlington, Vermont, USA.
Department of Biology, University of Vermont, Marsh Life Sciences, Burlington, Vermont, USA.
Mol Cell Proteomics. 2020 Oct;19(10):1586-1601. doi: 10.1074/mcp.RA120.002163. Epub 2020 Jun 30.
The Discoidin, CUB, and LCCL domain-containing protein (DCBLD) family consists of two type-I transmembrane scaffolding receptors, DCBLD1 and DCBLD2, which play important roles in development and cancer. The nonreceptor tyrosine kinases FYN and ABL are known to drive phosphorylation of tyrosine residues in YXXP motifs within the intracellular domains of DCBLD family members, which leads to the recruitment of the Src homology 2 (SH2) domain of the adaptors CT10 regulator of kinase (CRK) and CRK-like (CRKL). We previously characterized the FYN- and ABL-driven phosphorylation of DCBLD family YXXP motifs. However, we have identified additional FYN- and ABL-dependent phosphorylation sites on DCBLD1 and DCBLD2. This suggests that beyond CRK and CRKL, additional DCBLD interactors may be regulated by FYN and ABL activity. Here, we report a quantitative proteomics approach in which we map the FYN- and ABL-regulated interactomes of DCBLD family members. We found FYN and ABL regulated the binding of several signaling molecules to DCBLD1 and DCBLD2, including members of the 14-3-3 family of adaptors. Biochemical investigation of the DCBLD2/14-3-3 interaction revealed ABL-induced binding of 14-3-3 family members directly to DCBLD2.
含盘状结构域、CUB结构域和LCCL结构域的蛋白(DCBLD)家族由两种I型跨膜支架受体DCBLD1和DCBLD2组成,它们在发育和癌症中发挥重要作用。已知非受体酪氨酸激酶FYN和ABL可驱动DCBLD家族成员细胞内结构域中YXXP基序内酪氨酸残基的磷酸化,这会导致激酶(CRK)和类CRK(CRKL)的衔接蛋白的Src同源2(SH2)结构域的募集。我们之前对DCBLD家族YXXP基序的FYN和ABL驱动的磷酸化进行了表征。然而,我们在DCBLD1和DCBLD2上鉴定出了额外的FYN和ABL依赖性磷酸化位点。这表明除了CRK和CRKL之外,其他DCBLD相互作用分子可能受FYN和ABL活性的调节。在此,我们报告了一种定量蛋白质组学方法,通过该方法我们绘制了DCBLD家族成员的FYN和ABL调节的相互作用组。我们发现FYN和ABL调节了几种信号分子与DCBLD1和DCBLD2的结合,包括衔接蛋白14-3-3家族的成员。对DCBLD2/14-3-3相互作用的生化研究表明,ABL诱导14-3-3家族成员直接与DCBLD2结合。