Dubois T, Mira J P, Feliers D, Solito E, Russo-Marie F, Oudinet J P
INSERM U332, Laboratoire de Signalisation, Inflammation et Transformation Cellulaire, ICGM, 22, Rue Mechain, 75014 Paris, France.
Biochem J. 1998 Mar 15;330 ( Pt 3)(Pt 3):1277-82. doi: 10.1042/bj3301277.
In this study, we assessed the role of annexin V, a Ca2+-dependent phospholipid-binding protein, as a regulator of protein kinase C (PKC) and characterized its mechanism of inhibition. Several mutants obtained by oligonucleotide site-directed mutagenesis were tested in vitro on PKC activity in cytosolic fractions from Jurkat cells and on purified PKCalpha. Annexin V inhibited phosphorylation of annexin II by endogenous PKC and phosphorylation of myelin basic protein by PKCalpha. In both systems, the use of single Ca2+-binding-site mutants of annexin V led to a partial reversal of inhibition, and the Ca2+-binding site located in the first domain of annexin V was found to have the most important role. An increase in the number of mutated Ca2+-binding sites led to a greater loss of inhibition. These results corroborated those showing the progressive loss of binding of these mutants to phospholipid liposomes. In conclusion, we show that PKC inhibition by annexin V is the consequence of a mechanism involving phospholipid sequestration by annexin V, and that the Ca2+-binding site located in domain 1 of annexin V plays a predominant role in this process. In addition, we show that the R122AIK site, which may act analogously to a PKC-inhibitory pseudosubstrate site, is not involved in PKC inhibition, and that a peptide corresponding to the C-terminal tail of annexin V inhibits PKC activity but to a lesser extent than annexin V itself.
在本研究中,我们评估了膜联蛋白V(一种Ca2+依赖性磷脂结合蛋白)作为蛋白激酶C(PKC)调节剂的作用,并对其抑制机制进行了表征。通过寡核苷酸定点诱变获得的几种突变体在体外对来自Jurkat细胞胞质部分的PKC活性以及纯化的PKCα进行了测试。膜联蛋白V抑制内源性PKC介导的膜联蛋白II磷酸化以及PKCα介导的髓鞘碱性蛋白磷酸化。在这两个系统中,使用膜联蛋白V的单个Ca2+结合位点突变体导致抑制作用部分逆转,并且发现位于膜联蛋白V第一结构域的Ca2+结合位点起最重要作用。突变的Ca2+结合位点数量增加导致抑制作用丧失更多。这些结果证实了那些表明这些突变体与磷脂脂质体结合逐渐丧失的结果。总之,我们表明膜联蛋白V对PKC的抑制是一种涉及膜联蛋白V隔离磷脂的机制的结果,并且位于膜联蛋白V结构域1的Ca2+结合位点在该过程中起主要作用。此外,我们表明可能类似于PKC抑制性假底物位点起作用的R122AIK位点不参与PKC抑制,并且与膜联蛋白V C末端尾巴相对应的肽抑制PKC活性,但程度低于膜联蛋白V本身。