AI Article Synopsis

  • ClpC/Hsp93 is crucial for chloroplast function in vascular plants, with two paralogs (ClpC1 and ClpC2) present in Arabidopsis, where ClpC1 is the most abundant during leaf maturation.
  • ClpC proteins are found in both the stroma and associated with the envelope membranes of chloroplasts, indicating a unique role, although their exact functions at the membranes are not fully understood.
  • The study suggests that ClpC primarily operates as part of the Clp protease for maintaining protein homeostasis in the stroma and might have a novel role in protein quality control at the envelope membrane.

Article Abstract

The molecular chaperone ClpC/Hsp93 is essential for chloroplast function in vascular plants. ClpC has long been held to act both independently and as the regulatory partner for the ATP-dependent Clp protease, and yet this and many other important characteristics remain unclear. In this study, we reveal that of the two near-identical ClpC paralogs (ClpC1 and ClpC2) in Arabidopsis chloroplasts, along with the closely related ClpD, it is ClpC1 that is the most abundant throughout leaf maturation. An unexpectedly large proportion of both chloroplast ClpC proteins (30% of total ClpC content) associates to envelope membranes in addition to their stromal localization. The Clp proteolytic core is also bound to envelope membranes, the amount of which is sufficient to bind to all the similarly localized ClpC. The role of such an envelope membrane Clp protease remains unclear although it appears uninvolved in preprotein processing or Tic subunit protein turnover. Within the stroma, the amount of oligomeric ClpC protein is less than that of the Clp proteolytic core, suggesting most if not all stromal ClpC functions as part of the Clp protease; a proposal supported by the near abolition of Clp degradation activity in the clpC1 knock-out mutant. Overall, ClpC appears to function primarily within the Clp protease, as the principle stromal protease responsible for maintaining homeostasis, and also on the envelope membrane where it possibly confers a novel protein quality control mechanism for chloroplast preprotein import.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4036269PMC
http://dx.doi.org/10.1074/jbc.M113.534552DOI Listing

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