Kazanietz M G, Lewin N E, Gao F, Pettit G R, Blumberg P M
Molecular Mechanisms of Tumor Promotion Section, National Cancer Institute, Bethesda, Maryland 20892.
Mol Pharmacol. 1994 Aug;46(2):374-9.
In this study we explored the pattern of protein kinase C (PKC) isozyme selectivity of the bryostatins, a unique class of PKC activators that induce only a subset of the typical phorbol ester responses and antagonize those phorbol ester-mediated responses that they themselves fail to induce. The binding properties of individual recombinant PKC isozymes that had been expressed in insect cells, isolated, and reconstituted in Triton X-100/phosphatidylserine mixed micelles were determined. [3H]Bryostatin 1 showed lower affinity for PKC-beta 1 and -gamma, compared with PKC-alpha, -delta, -epsilon, and -eta. This pattern contrasts with that observed for other PKC ligands. These latter assays were conducted with isozymes reconstituted in phosphatidylserine, conditions that unfortunately do not permit quantitation of bryostatin 1 binding under equilibrium conditions. Using delta 19,20-bryostatin 10 and delta 19,20-isobryostatin 10, we could distinguish the respective roles of ligand and lipid in the pattern of selectivity. When isozymes were reconstituted in phosphatidylserine vesicles, delta 19,20-bryostatin 10 and delta 19,20-isobryostatin 10 showed similar affinities for PKC-alpha and -gamma, similarly to the phorbol esters. However, in the mixed micellar system, PKC-gamma showed a significantly lower binding affinity, as had been observed for bryostatin 1. These results suggest that the unique pattern of biological responses to the bryostatins does not represent a unique pattern of isotype recognition. Furthermore, the lipid environment of PKC plays an important role in determining the binding selectivity for individual isozymes.
在本研究中,我们探究了苔藓抑素对蛋白激酶C(PKC)同工酶的选择性模式。苔藓抑素是一类独特的PKC激活剂,仅诱导典型佛波酯反应的一个子集,并拮抗那些它们自身无法诱导的佛波酯介导的反应。我们测定了在昆虫细胞中表达、分离并在 Triton X - 100/磷脂酰丝氨酸混合胶束中重构的各个重组PKC同工酶的结合特性。与PKC-α、-δ、-ε和-η相比,[3H]苔藓抑素1对PKC-β1和-γ的亲和力较低。这种模式与其他PKC配体所观察到的模式形成对比。后者的测定是在磷脂酰丝氨酸中重构的同工酶上进行的,遗憾的是,这些条件不允许在平衡条件下对苔藓抑素1的结合进行定量。使用δ19,20 - 苔藓抑素10和δ19,20 - 异苔藓抑素10,我们可以区分配体和脂质在选择性模式中的各自作用。当同工酶在磷脂酰丝氨酸囊泡中重构时,δ19,20 - 苔藓抑素10和δ19,20 - 异苔藓抑素10对PKC-α和-γ表现出相似的亲和力,与佛波酯类似。然而,在混合胶束系统中,PKC-γ的结合亲和力显著较低,正如苔藓抑素1所观察到的那样。这些结果表明,苔藓抑素独特的生物学反应模式并不代表独特的同工型识别模式。此外,PKC的脂质环境在决定对各个同工酶的结合选择性方面起着重要作用。