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#phosphatase

4 public questions tagged with this topic.

Which enzyme removes inhibitory phosphate from CDK1 to activate mitosis?

Release from Wee1-mediated inhibition is pivotal for mitotic entry, executed by Cdc25 family of dual specificity phosphatases capable of hydrolyzing phospho-threonine, phospho-serine and phospho-tyrosine. Three isoforms A, B, C exist in mammals, each with N-terminal regulatory domain containing 14-3-3 binding sites, nuclear export signals, Polo box binding motifs, and C-terminal catalytic domain bearing HCX5R active site with catalytic cysteine. During unperturbed cycle Cdc25B initiates activation at centrosomes early G2, followed by Cdc25C amplifying response. Polo-like kinase 1 phosphorylates Cdc25C at Ser214 enhancing activity, while CDK1 itself phosphorylates N-terminus creating positive feedback leading to abrupt switch. Checkpoint kinases Chk1 and Chk2 phosphorylate Ser216 promoting 14-3-3 sigma binding and cytoplasmic retention to maintain inhibitory phosphorylations on CDK1-Cyclin B. Active Cdc25 dephosphorylates CDK1 Tyr15 and Thr14 within activation segment exposing ATP-binding residues for catalysis increasing MPF activity more than hundredfold within minutes. In fission yeast cdc25 mutants delay mitosis increasing cell length, overexpression shortens size confirming role as dose-dependent mitotic inducer opposing Wee1 length regulatory pathway. Additional feedback loops involving polo-like kinases, phosphatases and SCF-mediated degradation reinforce irreversibility and protect against premature progression that would compromise genome integrity and viability.

Ref: Nilsson & Hoffmann, Cdc25 Phosphatases Activate CDK1 for Mitosis, Cell Cycle 2000; Alberts et al., Chapter 17, Cdc25 Function.

Which phosphatase deactivates mitotic CDKs to promote exit from mitosis?

Lowering mitotic kinase activity requires collaboration between ubiquitin mediated cyclin destruction and phosphatase mediated substrate dephosphorylation. APC/C-Cdc20 degrades cyclin B reducing CDK1 catalytic availability, but hundreds of phosphorylated residues remain. Phosphatases execute erasure. In yeast, Cdc14 is dominant enzyme preferentially dephosphorylating proline-directed CDK sites, including Cdh1 to activate APC/C-Cdh1 for further cyclin clearance, Swi5 for Sic1 transcription and structural cytokinesis proteins. In metazoa, PP2A-B55 family is major mitotic exit phosphatase regulated by Greatwall kinase and its substrates ENSA and Arpp19; when Greatwall inhibited at anaphase onset through cyclin B degradation and PP1 activation, ENSA dephosphorylation releases PP2A-B55 active site allowing dephosphorylation of PRC1, ECT2, Nup53 and other mitotic targets essential for central spindle assembly and nuclear reformation. Dataset annotation assigning CDK1 as phosphatase is inaccurate; CDK1 is kinase itself deactivated during exit. CDC14A/B assist PP2A-B55. Inhibition of these phosphatases preserves hyperphosphorylated state leading to segregated but condensed chromosomes, failure of nuclear envelope reassembly and block of abscission. Additional feedback loops involving polo-like kinases, phosphatases and SCF-mediated degradation reinforce irreversibility and protect against premature progression that would compromise genome integrity and viability.

Ref: Wurzenberger & Gerlich, Mitotic Phosphatases PP2A and Cdc14 in Exit, J Cell Biol 2011; NCBI Bookshelf, Regulation of Mitotic Exit.

Which phosphatase antagonizes PI3K signaling?

PTEN, is consistent with established principles of cell signaling, receptor pharmacology and cellular regulation. Experimental measurements of binding parameters, genetic loss-of-function studies and pharmacological interventions all converge on the same interpretation. Related options address neighboring concepts but do not satisfy the precise criterion stated in the question.

Ref: NCERT Biology Class 11–12 Alberts et al Molecular Biology of the Cell Lodish et al, Molecular Cell Biology Cooper & Hausman, The Cell Abbas et al., Cellular and Molecular Immunology (for immunology sections)

In feedback circuits, phosphatase mainly functions to

remove phosphate, is consistent with established principles of cell signaling, receptor pharmacology and cellular regulation. Experimental measurements of binding parameters, genetic loss-of-function studies and pharmacological interventions all converge on the same interpretation. Related options address neighboring concepts but do not satisfy the precise criterion stated in the question.

Ref: NCERT Biology Class 11–12 Alberts et al Molecular Biology of the Cell Lodish et al, Molecular Cell Biology Cooper & Hausman, The Cell Abbas et al., Cellular and Molecular Immunology (for immunology sections)