Steinert P M
Dermatology Branch, National Cancer Institute, Bethesda, Maryland 20892.
J Biol Chem. 1988 Sep 15;263(26):13333-9.
The major sites of phosphorylation have been determined on the human keratin intermediate filament keratin 1 (type II) chain expressed in terminally differentiating epidermis. A total of nine phosphate sites were found, involving 1 threonine and 8 serine residues, and were localized to end domain sequences. The sites identified corresponded to major sites of phosphorylation as determined by direct quantitation of O-phosphoserine. Since the tissue was cultured with [32 P] orthophosphate only briefly, labeling occurred primarily by turnover, so that information on the dynamics of phosphorylation was also obtained. The degrees and specific activities (that is, turnover rates) of phosphorylation of these sites varied widely between different isoelectric variants (phosphate isomers) of keratin 1 chains and correlated with their locations on the chain: those sites on the more exposed E1 and E2 subdomains were fully phosphorylated and turning over at high rates, while a site near the end of the rod domain in a presumably more confined location was only slightly phosphorylated and turning over at low rate. The nature of the sequences around the phosphorylated residues indicates that cAMP-dependent and probably other protein kinase activities operate simultaneously in intact normal epidermal tissue. The correlation between the degrees and rates of turnover of phosphorylation with the locations on the chain may have an important bearing on the functional role of phosphorylation of the keratin intermediate filaments in this tissue.
已确定在终末分化表皮中表达的人角蛋白中间丝角蛋白1(II型)链上的主要磷酸化位点。总共发现了9个磷酸化位点,涉及1个苏氨酸残基和8个丝氨酸残基,且定位于末端结构域序列。所鉴定的位点对应于通过直接定量O-磷酸丝氨酸确定的主要磷酸化位点。由于该组织仅用[32P]正磷酸盐短暂培养,标记主要通过周转发生,因此也获得了关于磷酸化动力学的信息。这些位点的磷酸化程度和比活性(即周转率)在角蛋白1链的不同等电变体(磷酸异构体)之间差异很大,并且与其在链上的位置相关:位于更暴露的E1和E2亚结构域上的那些位点完全磷酸化且周转率高,而在杆状结构域末端附近一个可能更受限位置的位点仅轻微磷酸化且周转率低。磷酸化残基周围序列的性质表明,cAMP依赖性以及可能其他蛋白激酶活性在完整的正常表皮组织中同时起作用。磷酸化程度和周转率与链上位置之间的相关性可能对该组织中角蛋白中间丝磷酸化的功能作用具有重要影响。