Proteomics Analysis Reveals Overlapping Functions of Clustered Protocadherins
Протеомный анализ выявляет перекрывающиеся функции кластеризованных протокадгеринов
2009-10-20
SCID: 54.1/bnej4746
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PCDH-associated protein complexesclustered protocadherinsneuronal survivalpostsynaptic densityproteomics analysis
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Abstract (AI)
The three tandem-arrayed protocadherin (Pcdh) gene clusters, namely Pcdh-alpha, Pcdh-beta, and Pcdh-gamma, play important roles in the development of the vertebrate central nervous system. To gain insight into the molecular action of PCDHs, we performed a systematic proteomics analysis of PCDH-gamma-associated protein complexes. We identified a list of 154 non-redundant proteins in the PCDH-gamma complexes. This list includes nearly 30 members of clustered Pcdh-alpha, -beta, and -gamma families as core components of the complexes and additionally over 120 putative PCDH-associated proteins. We validated a selected subset of PCDH-gamma-associated proteins using specific antibodies. Analysis of the identities of PCDH-associated proteins showed that the majority of them overlap with the proteomic profile of postsynaptic density preparations. Further analysis of membrane protein complexes revealed that several validated PCDH-gamma-associated proteins exhibit reduced levels in Pcdh-gamma-deficient brain tissues. Therefore, PCDH-gamma s are required for the integrity of the complexes. However, the size of the overall complexes and the abundance of many other proteins remained unchanged, raising a possibility that PCDH-alphas and PCDH-betas might compensate for PCDH-gamma function in complex formation. As a test of this idea, RNA interference knockdown of both PCDH-alphas and PCDH-gamma s showed that PCDHs have redundant functions in regulating neuronal survival in the chicken spinal cord. Taken together, our data provide evidence that clustered PCDHs coexist in large protein complexes and have overlapping functions during vertebrate neural development.
Key Findings
1
Combined RNA-interference knockdown of PCDH-alpha and PCDH-gamma demonstrated redundant protocadherin functions in regulating neuronal survival in the chicken spinal cord.
2
Most PCDH-associated proteins overlapped with proteins found in postsynaptic density preparations, linking clustered protocadherins to synaptic protein complexes.
3
Overall complex size and many protein abundances remained unchanged after Pcdh-gamma loss, suggesting that PCDH-alpha and PCDH-beta can compensate in complex formation.
4
Several validated PCDH-gamma-associated proteins were reduced in Pcdh-gamma-deficient brain tissue, indicating that PCDH-gamma supports complex integrity.
5
Systematic proteomics identified 154 non-redundant proteins in PCDH-gamma-associated complexes, including nearly 30 clustered protocadherins and over 120 putative associated proteins.
Research Object
clustered protocadherins (Pcdh-alpha, Pcdh-beta, and Pcdh-gamma) and their associated protein complexes in the vertebrate central nervous system
Research Subject
the composition, integrity, and overlapping roles of clustered protocadherin-associated protein complexes in vertebrate neural development, including regulation of neuronal survival
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2009-10-20
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