Kank proteins: structure, functions and diseases
The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor...
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Published in | Cellular and molecular life sciences : CMLS Vol. 66; no. 16; pp. 2651 - 2659 |
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Main Authors | , , , , |
Format | Journal Article |
Language | English |
Published |
Basel
Basel : SP Birkhäuser Verlag Basel
01.08.2009
SP Birkhäuser Verlag Basel Springer Nature B.V |
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Abstract | The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor gene in renal cell carcinoma, while the other members were found by homology search. The family is involved in the regulation of actin polymerization and cell motility through signaling pathways containing PI3K/Akt and/or unidentified modulators/effectors. Their relationship to diseases such as cancer, and to neuronal and developmental disorders, will be an important subject of future study. |
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AbstractList | The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor gene in renal cell carcinoma, while the other members were found by homology search. The family is involved in the regulation of actin polymerization and cell motility through signaling pathways containing PI3K/Akt and/or unidentified modulators/effectors. Their relationship to diseases such as cancer, and to neuronal and developmental disorders, will be an important subject of future study. The Kank family of proteins, Kank1–Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor gene in renal cell carcinoma, while the other members were found by homology search. The family is involved in the regulation of actin polymerization and cell motility through signaling pathways containing PI3K/Akt and/or unidentified modulators/effectors. Their relationship to diseases such as cancer, and to neuronal and developmental disorders, will be an important subject of future study. The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor gene in renal cell carcinoma, while the other members were found by homology search. The family is involved in the regulation of actin polymerization and cell motility through signaling pathways containing PI3K/Akt and/or unidentified modulators/effectors. Their relationship to diseases such as cancer, and to neuronal and developmental disorders, will be an important subject of future study.The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor gene in renal cell carcinoma, while the other members were found by homology search. The family is involved in the regulation of actin polymerization and cell motility through signaling pathways containing PI3K/Akt and/or unidentified modulators/effectors. Their relationship to diseases such as cancer, and to neuronal and developmental disorders, will be an important subject of future study. The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the C-terminal region, with an additional motif, the KN motif, at the N-terminus. Kank1 was obtained by positional cloning of a tumor suppressor gene in renal cell carcinoma, while the other members were found by homology search. The family is involved in the regulation of actin polymerization and cell motility through signaling pathways containing PI3K/Akt and/or unidentified modulators/effectors. Their relationship to diseases such as cancer, and to neuronal and developmental disorders, will be an important subject of future study. [PUBLICATION ABSTRACT] |
Author | Kakinuma, N Kiyama, R Roy, B. C Wang, Y Zhu, Y |
Author_xml | – sequence: 1 fullname: Kakinuma, N – sequence: 2 fullname: Zhu, Y – sequence: 3 fullname: Wang, Y – sequence: 4 fullname: Roy, B. C – sequence: 5 fullname: Kiyama, R |
BackLink | https://www.ncbi.nlm.nih.gov/pubmed/19554261$$D View this record in MEDLINE/PubMed |
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Keywords | Coiled-coil motif Signal transduction Renal cell carcinoma Actin stress fiber Nucleo-cytoplasmic shuttling Ankyrin-repeat Tumor suppressor gene |
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Snippet | The Kank family of proteins, Kank1-Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the... The Kank family of proteins, Kank1–Kank4, are characterized by their unique structure, coiled-coil motifs in the N-terminal region, and ankyrin-repeats in the... |
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SubjectTerms | 1-Phosphatidylinositol 3-kinase Actin Actins - metabolism Adaptor Proteins, Signal Transducing AKT protein Alternative Splicing Amino Acid Motifs - physiology Ankyrin Repeat Ankyrins Biochemistry Biomedical and Life Sciences Biomedicine Cancer Carcinoma - genetics Carcinoma - metabolism Carcinoma - pathology Cell Biology cell movement Cloning Cytoskeletal Proteins Developmental disabilities Homology Kidney diseases Life Sciences Models, Biological molecular cloning Molecular structure Multigene Family Mutation N-Terminus neoplasm cells Neoplasms - genetics Neoplasms - metabolism Neoplasms - pathology Neuromodulation polymerization Proteins Renal cell carcinoma Review Signal Transduction Tumor suppressor genes Tumor Suppressor Proteins - chemistry Tumor Suppressor Proteins - metabolism Tumor Suppressor Proteins - physiology |
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Title | Kank proteins: structure, functions and diseases |
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