Ryegrass pollen allergen

Chemistry: molecular biology and microbiology – Micro-organism – tissue cell culture or enzyme using process... – Recombinant dna technique included in method of making a...

Reexamination Certificate

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C435S419000, C424S185100, C424S275100, C530S350000, C530S370000, C530S375000, C530S379000, C514S002600

Reexamination Certificate

active

06180368

ABSTRACT:

FIELD OF THE INVENTION
The present invention relates to the major allergenic protein
Lol p
Ib from pollen of ryegrass,
Lolium perenne
L. and to derivatives and homologues thereof and to allergenic proteins immunologically related thereto. The present invention is also directed to recombinant
Lol p
Ia and
Lol p
Ib and their drivatives and to expression vectors capable of directing synthesis of same. Even more particularly, the present invention is directed to cDNA separately encoding
Lol p
Ia and
Lol p
Ib and to expression vectors comprising same.
BACKGROUND OF THE INVENTION
Allergens constitute the most abundant proteins of grass pollen, which is the major cause of allergic disease in temperate climates (Marsh (1975) Allergens and the genetics of allergy; in M. Sela (ed), The Antigens, Vol. 3, pp 271-359, Academic Press Inc., London, New York)., Hill et al. (1979) Medical Journal of Australia 1, 426-429). The first descriptions of the allergenic proteins in ryegrass showed that they are immunochemically distinct, and are known as groups I, II, III and IV (Johnson and March (1965) Nature, 206, 935-937; and Johnson and Marsh (1966) Immunochemistry 3, 91-100). Using the International Union of Immunological Societies' (IUIS) nomenclature, these allergens are designated
Lol p
I,
Lol p
II,
Lol p
III and
Lol p
IV.
These four proteins have been identified in pollen ryegrass,
Lolium perenne
L., which act as antigens in triggering immediate (Type 1) hypersensitivity in susceptible humans.
Lol p
I is defined as an allergen because of its ability to bind to specific IgE in sera of ryegrass-sensitive patients, to act as an antigen in IgG responses and to trigger T-cell responses. The allergenic properties have been assessed by direct skin testing of grass pollen-sensitive patients. The results showed that 84% had a skin sensitivity to
Lol p
I (Freidhoff et al., (1986) J. Allergy Clin. Immunol. 78: 1190-1201) demonstrating the primary importance of this protein as the major allergen. Furthermore, 95% of patients demonstrated to be grass pollen-sensitive possessed specific IgE antibody that bound to
Lol p
I, as demonstrated by immunoblotting (Ford and Baldo (1986) International Archives of Allergy and Applied Immunology 81: 193-203).
Substantial allergenic cross-reactivity between grass pollens has been demonstrated using an IgE-binding assay, the radioallergo-sorbent test (RAST), for example, as described by Marsh et al. (1970) J. Allergy, 46, 107-121, and Lowenstein (1978) Prog. Allergy, 25, 1-62. (Karger, Basel).
The immunochemical relationship of
Lol p
I with other grass pollen antigens have been demonstrated using both polyclonal and monoclonal antibodies (e.g. Smart and Knox (1979) International Archives of Allergy and Applied Immunology 62: 173-187; Singh and Knox (1985) International Archives of Allergy and Applied Immunology 78, 300-304). Antibodies have been prepared to both purified proteins and IgE-binding components. These data demonstrate that the major allergen present in pollen of closely related grasses is immunochemically similar to
Lol p
I (Singh and Knox, supra).
SUMMARY OF THE INVENTION
In accordance with the present invention, it has been discovered that
Lol p
I comprises two proteins, designated herein
Lol p
Ia and
Lol p
Ib. The genes encoding these proteins have now been cloned permitting the large scale production of the recombinant allergens. One aspect of the present invention thus provides nucleic acid sequences coding for Lol p Ia (SEQ ID NO: 3 and SEQ ID NO: 5) and
Lol p
Ib (SEQ ID NO: 1).
Another aspect of the present invention relates to a recombinant vector comprising a DNA sequence encoding a protein displaying allergenic activity from pollen of a grass species. More particularly, the grass species belongs to the family Poaceae (Gramineae), and even more particularly, to the genus Lolium. Still even more particularly, the allergenic protein in characterized as being immunologically cross-reactive with antibody to
Lol p
Ia or
Lol p
Ib protein of
Lolium perenne
pollen, namely:
Pooid (festucoid) grasses. GROUP 1: Triticanea:
Bromus inermis,
smooth brome;
Agropyron repens,
English couch;
A.cristatum; Secale cereale
rye
Triticum aestivum
, wheat. GROUP 2: Poanae:
Dactylis glomerata,
orchard grass of cocksfoot;
Festuca elatior,
meadow fescue;
Lolium perenne,
perennial ryegrass;
L.multiflorum,
Italian ryegrass;
Poa pratensis,
Kentucky bluegrass;
P.compressa
, flattened meadow grass;
Avena sativa,
oat;
Holcus lanatus
, velvet grass or Yorkshire fog;
Anthoxanthum odoratum;
sweet vernal grass;
Arrhenatherum elatius,
oat grass;
Agrostis alba,
red top;
Phleum pratense,
timothy;
Phalaris arundinacea,
reed canary grass. Panicoid grass,
Paspalum notatum,
Bahia grass, Andropogonoid grasses:
Sorghum halepensis,
Johnson grass.
A further aspect of the present invention relates to a recombinant vector comprising a DNA sequence encoding the allergenic protein
Lol p
Ia or
Lol p
Ib of ryegrass,
Lolium perenne,
L. pollen, or derivatives or homologues thereof. More particularly, the present invention relates to a recombinant DNA molecule comprising a eukaryotic or prokaryotic origin of replication, a detectable marker, a DNA sequence encoding either
Lol p
Ia or
Lol p
Ib allergenic protein or derivatives or homologues thereof or an allergenic protein cross-reactive with an antibody to said
Lol p
Ia or
Lol p
Ib protein or their derivatives or homologues and optionally a promoter sequence capable of directing transcription of said allergenic proteins.
Yet another aspect of the present invention contemplates a method for producing recombinant
Lol p
Ia or
Lol p
Ib or derivatives or homologues thereof or an allergenic protein immunologically reactive to antibodies to
Lol p
Ia or
Lol p
Ib or a derivative or homologue thereof, comprising culturing an organism containing a replicable recombinant DNA molecule, said molecule comprising a promoter capable of expression in said organism, the gene encoding
Lol p
Ia or
Lol p
Ib or their derivatives or homologues or an immunologically related protein of
Lol p
Ia or
Lol p
Ib located downstream of and transcribed from said promoter, a selectable marker and a DNA vehicle containing a prokaryotic or eukaryotic origin of replication, under conditions and for a time sufficient for said recombinant DNA molecule to be stably maintained and direct the synthesis of
Lol p
Ia or
Lol p
Ib or their derivatives or homologues.
In yet another aspect of the present invention, there is provided non-native (i.e., recombinant or chemically synthesized)
Lol p
Ia (SEQ ID NO: 5 and SEQ ID NO: 6) or
Lol p
Ib (SEQ ID NO: 1 and SEQ ID NO: 2) or their derivatives or homologues or a non-native allergenic protein immunologically cross-reactive to antibodies to
Lol p
Ia or
Lol p
Ib or their derivatives or homologues.
The
Lol p
Ia and
Lol p
Ib proteins, and fragments or portions derived therefrom (peptides) can be used in methods of diagnosing, treating and preventing allergic reactions to ryegrass pollen.
Still yet another aspect of the present invention relates to antibodies to non-native
Lol p
Ia or
Lol p
Ib or a derivative of homologue thereof.
In still yet another aspect of the present invention, there is provided a method for detecting an antibody to an allergenic protein from pollen of the family Poaceae (Gramineae) in serum or other biological fluid comprising contacting said serum or fluid with recombinant
Lol p
Ia or
Lol p
Ib or their antigenic derivatives for a time and under conditions sufficient for an antibody-
Lolp
Ia or
Lol
-
p
Ib complex to form and subjecting said complex to a detecting means.
Another aspect of the present invention relates to a recombinant DNA molecule comprising a ryegrass pollen promoter sequence or homologue or degenerate form thereof located on said molecule and further having one or more restriction sites down stream of said promotor such that a nucleotide sequence inserted into one or more of these sites is transcribable in the correct reading f

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