Department of Cell Biology, University of Alabama, Birmingham, Alabama 35294, USA.
J Biol Chem. 2011 Oct 21;286(42):36898-906. doi: 10.1074/jbc.M111.230631. Epub 2011 Aug 2.
ADP-ribosylation factors (ARFs) and their activating guanine nucleotide exchange factors (GEFs) play key roles in membrane traffic and signaling. All ARF GEFs share a ∼200-residue Sec7 domain (Sec7d) that alone catalyzes the GDP to GTP exchange that activates ARF. We determined the crystal structure of human BIG2 Sec7d. A C-terminal loop immediately following helix J (loop>J) was predicted to form contacts with helix H and the switch I region of the cognate ARF, suggesting that loop>J may participate in the catalytic reaction. Indeed, we identified multiple alanine substitutions within loop>J of the full length and/or Sec7d of two large brefeldin A-sensitive GEFs (GBF1 and BIG2) and one small brefeldin A-resistant GEF (ARNO) that abrogated binding of ARF and a single alanine substitution that allowed ARF binding but inhibited GDP to GTP exchange. Loop>J sequences are highly conserved, suggesting that loop>J plays a crucial role in the catalytic activity of all ARF GEFs. Using GEF mutants unable to bind ARF, we showed that GEFs associate with membranes independently of ARF and catalyze ARF activation in vivo only when membrane-associated. Our structural, cell biological, and biochemical findings identify loop>J as a key regulatory motif essential for ARF binding and GDP to GTP exchange by GEFs and provide evidence for the requirement of membrane association during GEF activity.
ADP-核糖基化因子 (ARFs) 和它们的激活鸟嘌呤核苷酸交换因子 (GEFs) 在膜运输和信号转导中发挥着关键作用。所有的 ARF GEFs 都共享一个大约 200 个残基的 Sec7 结构域 (Sec7d),该结构域本身可以催化 GDP 到 GTP 的交换,从而激活 ARF。我们测定了人源 BIG2 Sec7d 的晶体结构。位于螺旋 J 之后的 C 端环(loop>J)被预测与螺旋 H 和同源 ARF 的开关 I 区域形成接触,这表明 loop>J 可能参与催化反应。事实上,我们在全长 BIG2 和 GBF1 以及 ARNO 这两个大的布雷菲德菌素 A 敏感 GEF 中的 Sec7d 或 loop>J 内鉴定出多个氨基酸替换,这些替换破坏了 ARF 的结合,而单个氨基酸替换允许 ARF 结合但抑制 GDP 到 GTP 的交换。loop>J 序列高度保守,这表明 loop>J 在所有 ARF GEFs 的催化活性中起着至关重要的作用。使用不能结合 ARF 的 GEF 突变体,我们表明 GEFs 独立于 ARF 与膜结合,并仅在膜相关时在体内催化 ARF 的激活。我们的结构、细胞生物学和生化研究结果确定了 loop>J 作为一个关键的调节基序,对于 GEF 结合 ARF 和 GDP 到 GTP 的交换是必不可少的,并为 GEF 活性过程中膜结合的必要性提供了证据。