Veis A, Wei K, Sfeir C, George A, Malone J
Division of Oral Biology, Northwestern University Dental School, Chicago, Illinois, USA.
Eur J Oral Sci. 1998 Jan;106 Suppl 1:234-8. doi: 10.1111/j.1600-0722.1998.tb02181.x.
Phosphophoryns (PPs) are unique aspartic acid and phosphoserine-rich proteins present in all species of dentin. Rat incisor odontoblast cDNA libraries contain messages encoding several acidic phosphorylated, serine-rich proteins. At least two of these share a common C-terminal domain coding region sequence. The polypeptide sequences in the N-terminal direction immediately adjacent to the conserved C-terminal domains of these two proteins (DMP2, DMP3) are distinctly different. In this domain, the DMP2 has extensive sequences of (DSS)n repeats with n as large as 24. DMP3 has fewer and shorter triplet sequences, n = 3, 4. The major rat incisor PPs (90-95 kDa) probably have the (DSS)n>>3. We propose that the name phosphophoryn be reserved for the extracellular matrix proteins with these extended repeats. DMPI, although strongly acidic, does not fit this category. If the S residues are phosphorylated and n > 3, conformational energy minimization computations show the (DSS)n sequence to assume a unique extended structure with parallel arrays of carboxylate and phosphate groups which may function as Ca2+ ion interaction edges. The phosphorylation of recombinant DMP2 C-terminal domain by various kinases has been examined. The repeat domains are not direct substrates for the CK2-like kinases but the kinases act in concert, so that the phosphorylation is hierarchical, apparently controlled by the presence of specific interruptions between the triplet domains.
磷磷蛋白(PPs)是存在于所有牙本质物种中的独特的富含天冬氨酸和磷酸丝氨酸的蛋白质。大鼠切牙成牙本质细胞cDNA文库包含编码几种酸性磷酸化、富含丝氨酸蛋白质的信息。其中至少有两种蛋白共享一个共同的C末端结构域编码区序列。在这两种蛋白(DMP2、DMP3)保守的C末端结构域紧邻的N末端方向上的多肽序列明显不同。在这个结构域中,DMP2有大量(DSS)n重复序列,n高达24。DMP3的三联体序列较少且较短,n = 3、4。大鼠切牙主要的PPs(90 - 95 kDa)可能具有(DSS)n>>3。我们建议将磷磷蛋白这个名称保留给具有这些延伸重复序列的细胞外基质蛋白。DMPI虽然酸性很强,但不符合这一类别。如果S残基被磷酸化且n > 3,构象能量最小化计算表明(DSS)n序列呈现出一种独特的延伸结构,带有平行排列的羧酸盐和磷酸基团阵列,这可能作为Ca2+离子相互作用边缘发挥作用。已经研究了各种激酶对重组DMP2 C末端结构域的磷酸化作用。重复结构域不是类CK2激酶的直接底物,但这些激酶协同作用,使得磷酸化是分级进行的,显然受三联体结构域之间特定间隔的存在控制。