Recognition sequences and structural elements contribute to shedding susceptibility of membrane proteins

Katja Althoff, Jürgen Müllberg, Dorthe Aasland, Nicole Voltz, Karl‐Josef Kallen, Joachim Grötzinger, Stefan Rose‐John

Biochemical Journal · 2001 · 64 citations · 44 references

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Abstract

Although regulated ectodomain shedding affects a large panel of structurally and functionally unrelated proteins, little is known about the mechanisms controlling this process. Despite a lack of sequence similarities around cleavage sites, most proteins are shed in response to the stimulation of protein kinase C by phorbol esters. The signal-transducing receptor subunit gp130 is not a substrate of the regulated shedding machinery. We generated several chimaeric proteins of gp130 and the proteins tumour necrosis factor (TNF-), transforming growth factor (TGF) and interleukin 6 receptor (IL-6R), which are known to be subject to shedding. By exchanging small peptide sequences of gp130 for cleavage-site peptides of TNF-, TGF- and IL-6R we showed that these short sequences conferred susceptibility to spontaneous and phorbol-ester-induced shedding of gp130. Importantly, these chimaeric gp130 proteins were functional, as shown by the phosphorylation of gp130 and the activation of signal transduction and activators of transcription 3 (' STAT3 ')

References

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