| Literature DB >> 29494643 |
Jordi Vilardell1, Cristina Girardi1, Oriano Marin1, Giorgio Cozza2, Lorenzo A Pinna1,3, Maria Ruzzene1,3.
Abstract
CK2 is a pleiotropic S/T protein kinase (formerly known as casein kinase 2) which is attracting increasing interest as therapeutic target, and the identification of its substrates is a crucial step in determining its involvement in different pathological conditions. We recently found that S131 of Akt2 (homologous to the well established CK2 target S129 of Akt1) is not phosphorylated by CK2 either in vitro or in vivo, although the consensus sequence recognized by CK2 (S/T-x-x-E/D/pS/pT) is conserved in it. Here, by exploiting synthetic peptides, in cell transfection experiments, and computational analysis, we show that a single sequence element, a T at position n+1, hampers phosphorylation, causing an α-helix structure organization which prevents the recognition of its own consensus by CK2. Our results highlight the role of negative determinants as crucial modulators of CK2 targeting and corroborate the concept that Akt1 and Akt2 display isoform specific features. Experiments with synthetic peptides suggest that Akt2 S131 could be phosphorylated by kinases of the Plk (Polo-like kinase) family, which are insensitive to the presence of the n+1 T. The low phylogenetic conservation of the Akt2 sequence around S131, as opposed to the extremely well-conserved Akt1 homologous sequence, would indicate a dominant positive role in the selective pressure only for the Akt1 phosphoacceptor site committed to undergo phosphorylation by CK2. By contrast, Akt2 S131 may mediate the response to specific physio/pathological conditions, being consequently shielded against basal CK2 targeting.Entities:
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Year: 2018 PMID: 29494643 PMCID: PMC5832243 DOI: 10.1371/journal.pone.0193479
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Comparison of Akt1 sequences in different species.
Analysis was performed by means of Basic Local Alignment Search Tool (BLAST) software of Uniprot. A 29-aminoacid fragment around S129 Akt1 of human sequences was used as reference. Invariable residues at positions between n-3 and n+3 are in bold, while variations are underlined.
| AKT1 (residues 110-146) | 129 | |||||||||||||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| | | ||||||||||||||||||||||||||||||||
| E | E | M | D | F | R | S | G | - | S | P | S | D | N | S | G | A | E | E | M | E | V | S | L | A | K | P | K | H | ||||
| P31749 | Human | E | E | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| K7C9N2 | Chimpanzee | E | E | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| G1S2V0 | Northern white-cheeked gibbon | E | E | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| G3RB32 | Western lowland gorilla | E | E | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| A0A1U7TIP6 | Philippine tarsier | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| P31750 | Mouse | E | T | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| A0A1U7QIL2 | Golden hamster | E | T | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| F7HW94 | White-tufted-ear marmoset | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | R | H | |||||||||
| I3ML41 | Thirteen-lined ground squirrel | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| M3XST6 | European domestic ferret | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| A0A143RHU3 | Cat | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| G1LMQ4 | Giant panda | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| E2RJX4 | Dog | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| U3C443 | White-tufted-ear marmoset | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | R | H | |||||||||
| F6SAS5 | Rhesus macaque | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| A0A096NK32 | Olive baboon | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| A0A0D9RBG0 | Green monkey | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| F6WGH2 | Horse | E | M | - | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| P47196 | Rat | E | T | M | D | F | R | S | G | - | S | P | E | M | E | V | A | L | A | K | P | K | H | |||||||||
| C1PIG3 | Pig | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| H0XPQ9 | Small-eared galago | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | A | L | A | K | P | R | H | |||||||||
| A0A1S2ZF54 | Western European hedgehog | E | M | M | D | F | H | S | G | - | S | P | E | M | E | V | A | L | A | K | P | K | H | |||||||||
| Q01314 | Bovine | E | T | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| D9IA52 | Goat | E | T | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| T1WF18 | domestic goose | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| A0A1U7S7Y2 | Chinese alligator | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| G1NL49 | Common turkey | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| K7FKB4 | Chinese softshell turtle | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| F1NMS0 | Chicken | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| U3JJZ0 | Collared flycatcher | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| U3J9Q1 | Mallard | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| H0ZRP6 | Zebra finch | E | M | M | D | F | R | S | G | - | S | P | E | M | E | V | S | M | T | K | P | K | H | |||||||||
| H0V394 | Guinea pig | E | L | M | E | F | Q | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| A0A0P6JFJ2 | Naked mole rat | E | L | M | E | F | Q | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| G3W4L9 | Tasmanian devil | E | L | M | D | F | R | S | G | - | S | P | E | M | E | V | S | T | T | K | P | K | H | |||||||||
| A0A1S3EV04 | Ord's kangaroo rat | - | T | M | D | F | R | S | G | - | S | P | E | M | E | V | S | L | A | K | P | K | H | |||||||||
| G1KLB6 | Green anole | E | I | M | D | F | R | S | G | - | S | P | E | M | E | I | S | M | T | K | P | K | H | |||||||||
| F6QP11 | Gray short-tailed opossum | E | L | M | D | F | Q | S | G | - | S | P | E | M | E | V | S | T | T | K | P | K | H | |||||||||
| Q98TY9 | African clawed frog | E | M | M | E | V | R | S | G | D | S | P | E | M | E | V | S | H | S | K | P | K | H | |||||||||
| F6XP81 | Western clawed frog | E | M | M | E | V | R | S | G | D | S | P | E | M | E | V | S | H | S | K | P | K | H | |||||||||
| H3A5T1 | West Indian ocean coelacanth | E | M | M | D | F | N | S | - | - | - | P | E | M | E | V | S | L | T | R | P | K | H | |||||||||
| W5N501 | Spotted gar | E | M | M | D | C | R | S | G | - | S | P | D | M | E | V | Y | L | T | K | P | R | L | |||||||||
Comparison of Akt2 sequences in different species.
Analysis was performed by means of Basic Local Alignment Search Tool (BLAST) software of Uniprot. A 29-aminoacid fragment around S131 Akt2 of human sequences was used as reference. Invariable residues at positions between n-3 and n+3 are in bold, while variations are underlined. The common name of species with T at n+1 position, as in human, are underlined.
| AKT2 (residues 117-145) | 131 | |||||||||||||||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| | | ||||||||||||||||||||||||||||||||
| E | D | P | M | D | Y | K | C | G | S | P | S | D | S | S | T | T | E | E | M | E | V | A | V | S | K | A | R | A | ||||
| P31751 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| K7CDC2 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| H2NYU6 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| G3QGC8 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| H0VK35 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| A0A1D5RH80 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F6XQD8 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| I3M1D1 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| A0A0D9QUT3 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| G1SD70 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| S9YPT4 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| M9WQH0 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| G3SRC6 | E | D | P | M | D | F | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F6RGP1 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| 0A1U7U3E7 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| H0XA83 | K | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F7HW88 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F7I4A2 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| P47197 | E | D | A | M | D | Y | K | C | G | S | P | M | M | E | V | A | V | S | K | A | R | A | ||||||||||
| E1B9D1 | D | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F1PRG4 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| M3Z1Y7 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| M3WGH1 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| G1M1Q8 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F1PSA7 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| A0A0B8RZS0 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| Q60823 | E | D | A | M | D | Y | K | C | G | S | P | M | M | E | V | A | V | N | K | A | R | A | ||||||||||
| U6D7I2 | E | D | P | M | D | F | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| A0A1S3GIW6 | E | D | S | M | D | Y | K | C | G | S | P | E | M | D | V | A | V | S | R | A | R | A | ||||||||||
| H2QGC2 | E | D | P | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | A | K | - | H | G | ||||||||||
| G1NXG4 | E | D | P | M | E | Y | K | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| F7BKI3 | E | D | L | M | D | Y | K | C | G | S | P | D | M | E | V | A | V | S | K | T | R | T | ||||||||||
| H9G6X3 | E | D | R | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | T | K | T | R | A | ||||||||||
| A0A1S3ALD3 | K | A | - | - | - | Y | E | C | G | S | P | E | M | E | V | A | V | S | K | A | R | A | ||||||||||
| A0A1U8CNN2 | D | S | A | I | D | Y | K | C | G | S | P | M | M | E | V | A | V | N | K | A | R | A | ||||||||||
| A0A1U7SGJ4 | E | D | A | M | D | Y | K | C | G | S | P | E | M | E | V | A | V | T | K | T | R | V | ||||||||||
| W5NBQ5 | E | E | P | M | D | I | K | F | G | S | P | E | M | E | V | A | M | S | K | S | R | S | ||||||||||
| A0A087XMG3 | E | E | P | M | E | I | K | F | G | S | P | E | M | E | I | A | M | C | K | S | R | S | ||||||||||
| M4ADD6 | E | E | P | M | E | I | K | F | G | S | P | E | M | E | I | A | M | C | K | S | R | S | ||||||||||
| H3BHT2 | E | S | - | M | D | F | K | C | G | S | P | E | M | E | V | V | V | S | K | T | H | V | ||||||||||
| F6W6V1 | E | D | S | M | E | F | K | C | S | S | P | E | M | E | V | A | V | T | K | T | R | T | ||||||||||
| Q7ZX15 | E | E | A | M | E | V | K | Y | G | S | P | Q | M | D | V | A | M | S | K | G | H | P | ||||||||||
| B1WB72 | E | E | A | M | E | V | K | Y | G | S | P | Q | M | D | V | A | M | S | K | G | R | P | ||||||||||
| Q6IP76 | E | E | A | M | E | V | K | Y | G | S | P | Q | M | D | V | A | M | S | K | G | R | P | ||||||||||
List of the peptides used in this work, with sequence (one-letter code) and nomenclature adopted.
The parental peptides are indicated as wild type (wt). The CK2 target site Akt1 S129 and its homologous residue Akt2 S131 are underlined. Positions not conserved in the two Akt isoforms (human sequence), and substitutions that swap Akt1/Akt2 positions in the variant peptides, are in bold. The same colors denote substitutions that swap Akt1/Akt2 positions. Green indicates other substitutions. Three N-terminal Arginine residues (R3) were introduced for technical reasons (see Methods).
| Peptide name | Sequence |
|---|---|
One-letter code for the aminoacids of the above peptides: A = Ala = alanine; D = Asp = aspartic acid; E = Glu = glutamic acid; G = Gly = glycine; M = Met = methionine; N = Asn = asparagine; P = Pro = proline; R = Arg = arginine; S = Ser = serine; T = Thr = threonine; V = Val = valine
Fig 1Phosphorylation of Akt1 and Akt2 peptides by CK2: Time course and kinetics.
(A) Akt peptides at the indicated concentrations were incubated with CK2 for increasing length of times (0-2-5-10-20-30-60-90-120 min). (B) Akt peptides at increasing concentrations (0.3-0.5-1-2-3-4 mM) were incubated with CK2 for 10 min. Kinetics values were calculated by Prism Graphpad Software. Phosphorylation assay conditions as in Materials and Methods. Results are reported as means of 3 experiments ± SEM.
Summary of the phosphorylation of Akt peptides by CK2.
Peptides are listed as in Table 3, follow by (+) or (-) accordingly to their level of phosphorylation by CK2 (see text for details). The underlined residues are S129 of Akt1 and S131 of Akt2 of human sequence, respectively.
| Peptide name | Sequence | Phosphorylation |
|---|---|---|
| + | ||
| - | ||
| - | ||
| - | ||
| + | ||
| + | ||
| + | ||
| - |