The domain within your query sequence starts at position 248 and ends at position 450; the E-value for the MACPF domain shown below is 9.45e-51.

KLLVVQNTVEVAQFTNNNPEFLQVAEPFWKELSHLPTLYDYSAYRRLIDQYGTHYLQSGS
LGGEYRVLFYVDSGSAKETGFQSDQDNACSSADFQFLFTSSADQRCMKQLETEKSTSGNK
GRLLRGKPLVRGGDSGFVADLSFLDLDNPAGNKQRYSSWAGSVTRLPQVIKEKLAPLYEL
VKEVPCASVKRLYLKRAIEEYFD

MACPF

membrane-attack complex / perforin
MACPF
SMART accession number:SM00457
Description: -
Interpro abstract (IPR020864):

The membrane attack complex/perforin (MACPF) domain is conserved in bacteria, fungi, mammals and plants. It was originally identified and named as being common to five complement components (C6, C7, C8-alpha, C8-beta, and C9) and perforin. These molecules perform critical functions in innate and adaptive immunity. The MAC family proteins and perforin are known to participate in lytic pore formation. In response to pathogen infection, a sequential and highly specific interaction between the constituent elements occurs to form transmembrane channels which are known as the membrane-attack complex (MAC).Only a few other MACPF proteins have been characterised and several are thought to form pores for invasion or protection [ (PUBMED:16900325) (PUBMED:17717151) (PUBMED:18440555) ]. Examples are proteins from malarial parasites [ (PUBMED:15659064) ], the cytolytic toxins from sea anemones [ (PUBMED:17368498) ], and proteins that provide plant immunity [ (PUBMED:16900325) (PUBMED:15799997) ]. Functionally uncharacterised MACPF proteins are also evident in pathogenic bacteria such as Chlamydia spp [ (PUBMED:10608922) ] and Photorhabdus luminescens (Xenorhabdus luminescens) [ (PUBMED:17717151) ].

The MACPF domain is commonly found to be associated with other N- and C-terminal domains, such as TSP1 LDLRA EGF-like,Sushi/CCP/SCR FIMAC or C2. They probably control or target MACPF function [ (PUBMED:17717151) (PUBMED:17872444) ]. The MACPF domain oligomerizes, undergoes conformational change, and is required for lytic activity.

The MACPF domain consists of a central kinked four-stranded antiparallel beta sheet surrounded by alpha helices and beta strands, forming two structural segments. Overall, the MACPF domain has a thin L-shaped appearance. MACPF domains exhibit limited sequence similarity but contain a signature [YW]-G-[TS]-H-[FY]-x(6)-G-G motif [ (PUBMED:17717151) (PUBMED:18440555) (PUBMED:17872444) ].

Some proteins known to contain a MACPF domain are listed below:

  • Vertebrate complement proteins C6 to C9. Complement factors C6 to C9 assemble to form a scaffold, the membrane attack complex (MAC), that permits C9 polymerisation into pores that lyse Gram-negative pathogens [ (PUBMED:18440555) (PUBMED:17872444) ].
  • Vertebrate perforin. It is delivered by natural killer cells and cytotoxic T lymphocytes and forms oligomeric pores (12 to 18 monomers) in the plasma membrane of either virus-infected or transformed cells.
  • Arabidopsis thaliana (Mouse-ear cress) constitutively activated cell death 1 (CAD1) protein. It is likely to act as a mediator that recognises plant signals for pathogen infection [ (PUBMED:15799997) ].
  • Arabidopsis thaliana (Mouse-ear cress) necrotic spotted lesions 1 (NSL1) protein [ (PUBMED:16900325) ].
  • Venomous sea anemone Phyllodiscus semoni (Night anemone) toxins PsTX-60A and PsTX-60B [ (PUBMED:17368498) ].
  • Venomous sea anemone Actineria villosa (Okinawan sea anemone) toxin AvTX-60A [ (PUBMED:17368498) ].
  • Plasmodium sporozoite microneme protein essential for cell traversal 2 (SPECT2). It is essential for the membrane-wounding activity of the sporozoite and is involved in its traversal of the sinusoidal cell layer prior to hepatocyte-infection [ (PUBMED:15659064) ].
  • P. luminescens Plu-MACPF. Although nonlytic, it was shown to bind to cell membranes [ (PUBMED:17717151) ].
  • Chlamydial putative uncharacterised protein CT153 [ (PUBMED:10608922) ].
Family alignment:
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There are 3546 MACPF domains in 3539 proteins in SMART's nrdb database.

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