IP Library Patent Application 18201129
Patent Application
App. No. 18/201,129

POLYPEPTIDE MODIFICATION AND CONJUGATION METHODS

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Patent No.
US None
App. No.
18/201,129
Abstract

The present disclosure relates to a selective and efficient method to connect a polypeptide containing at least one lysine residue to a cargo moiety, where one step of the method involves reaction of a semicarbazide group with an ortho-acylphenyl boronic acid, forming a cyclic diazaborine ring fused to phenyl. Conditions for formation of the cyclic diazaborine are sufficiently mild for the method to be used in the presence of sensitive biomolecules such as polynucleotides. A substituent group on the phenyl can be used to link the cyclic diazaborine to a cargo moiety such as a polynucleotide, bead, or reactive group, providing a polypeptide—cargo moiety conjugate that is useful for various purposes, such as to analyze, identify, track, locate, detect, or immobilize the polypeptide. Also provided are polypeptide—cargo moiety conjugates, wherein the polypeptide and cargo moiety are connected via a linker that comprises a cyclic diazaborine.

Claims (59)

1 . A method to modify a polypeptide that contains at least one lysine residue, which method comprises contacting the polypeptide with an acylating agent of Formula (I):

wherein:

LG is a leaving group; and

PG is a nitrogen protecting group.

2 . The method of claim 1 , wherein the method provides a modified polypeptide comprising at least one modified lysine residue, and having the formula:

PP—(CH 2 ) 4 —NH—C(=O)—NH—NH—PG, wherein PP is the polypeptide;

—(CH 2 ) 4 —NH— is the side chain of a lysine residue in the polypeptide;

and PG is the nitrogen protecting group.

3 . The method of claim 1 , wherein the nitrogen protecting group is a carbamate, sulfonamide or acyl.

4 . The method of claim 1 , wherein LG is a phenoxy group wherein the phenyl ring of the phenoxy group is optionally substituted with up to four independently selected electron-withdrawing substituents.

5 . The method of claim 1 , which further comprises removing the nitrogen protecting group from PP—(CH 2 ) 4 —NH—C(=O)—NH—NH—PG, to provide a modified polypeptide of the formula PP—(CH 2 ) 4 —NH—C(=O)—NH—NH 2 ,

wherein PP is the polypeptide, —(CH 2 ) 4 NH— is the side chain of a lysine residue in the polypeptide, and PG is the nitrogen protecting group.

6 . The method of claim 5 , which further comprises a step of contacting the modified polypeptide of the formula PP—(CH 2 ) 4 —NH—C(=O)—NH—NH 2 with a substituted ortho-acylphenylboronic acid of the formula:

to form a diazaborine of the formula:

wherein

is the polypeptide connected to the acyl group on the diazaborine via a lysine residue of the polypeptide,

R′ is H or C 1-4 alkyl, and

R is a substituent group on the phenyl ring, which comprises a cargo moiety or a reactive functional moiety to enable connection of R to a cargo moiety.

7 . The method of claim 6 , wherein R is a group of the formula—L 2 -M,

wherein L 2 is a linking group, and

M is i) a cargo moiety, or ii) a biorthogonal handle for attaching R to a cargo moiety linked to a complementary biorthogonal handle; wherein the cargo moiety is selected from the group consisting of a polypeptide, a polynucleotide, and a polysaccharide.

8 . The method of claim 6 , wherein the substituted ortho-acylphenylboronic acid is of the formula:

wherein Z is C 2 —C 12 alkylene, and CC is a bioorthogonal handle such as a click chemistry reactant.

9 . A conjugate comprising a polypeptide connected by a tether to a cargo moiety or a reactive functional moiety, wherein the tether comprises a diazaborine, and wherein the conjugate has the formula:

wherein:

R′ is H or C 1-4 alkyl;

PP is the polypeptide;

M is the cargo moiety or the reactive functional moiety;

L 1 is a linker connecting the tether to PP; and

L 2 is a linker connecting the tether to M.

10 . The conjugate of claim 9 , wherein R′ is H or methyl.

11 . The conjugate of claim 9 , which is of the formula:

wherein

is connection of the polypeptide to a carbonyl group on the diazaborine through a lysine residue of the polypeptide.

12 . The conjugate of claim 9 , which is attached to a solid support.

13 . The conjugate of claim 9 , wherein M is the cargo moiety selected from the group consisting of a polypeptide, a polynucleotide, and a polysaccharide.

14 . A method for preparing a conjugate having the formula:

wherein R′ is H or C1-4 alkyl;

PP is a polypeptide, which is connected by a tether to M, wherein the tether comprises a diazaborine;

M is a cargo moiety or a reactive functional moiety that is configured to connect the conjugate to a cargo moiety;

L 1 is a linker connecting the tether to PP; and L 2 is a linker connecting the tether to M;

the method comprises the following steps:

a. modifying a polypeptide that contains at least one lysine residue by a method which comprises contacting the polypeptide with an acylating agent of Formula (I):

wherein:

LG is a leaving group; and PG is a nitrogen protecting group, to attach a semicarbazide group to the at least one lysine residue to form a polypeptide semicarbazide compound;

b. optionally, removing the nitrogen protecting group present on the semicarbazide group of the polypeptide semicarbazide compound; and

c. contacting the polypeptide semicarbazide compound with an ortho-acyl phenylboronic acid of the formula:

under conditions where the semicarbazide group reacts with the ortho-acyl phenylboronic acid to form a diazaborine to provide the conjugate.

15 . The method of claim 14 , wherein the nitrogen protecting group is a carbamate, sulfonamide or acyl.

16 . The method of claim 14 , further comprising a step of providing the polypeptide prior to step (a), the step comprising: fragmenting proteins from a biological sample to generate a plurality of polypeptides comprising the polypeptide.

17 . The method of claim 16 , wherein step of providing the polypeptide further comprises coupling an N-terminal amine group of an N-terminal amino acid (NTAA) residue of the polypeptide to a solid support.

18 . A method of analyzing a polypeptide comprising at least one lysine residue, the method comprising the steps of:

a. providing a conjugate of the polypeptide and a recording tag on a solid support, wherein the recording tag comprises a polynucleotide that is conjugated to the polypeptide according to the following steps: (i) contacting the polypeptide with an acylating agent of Formula (I)

wherein: LG is a leaving group; and PG is a nitrogen protecting group, to attach a semicarbazide group to the at least one lysine residue to form a polypeptide semicarbazide compound; (ii) optionally, removing any protecting group present on the semicarbazide group of the polypeptide semicarbazide compound; and (iii) contacting the polypeptide semicarbazide compound with an ortho-acyl phenylboronic acid of the formula:

wherein L 2 is a linking group and M is the recording tag or a reactive functional moiety that is configured to connect the conjugate to the recording tag, under conditions where the semicarbazide group reacts with the ortho-acyl phenylboronic acid to form a diazaborine to provide the conjugate; (iv) optionally, when M is the reactive functional moiety, using the reactive functional moiety to connect the conjugate to the recording tag; (v) attaching the polypeptide or the conjugate to the solid support before or after any one of the steps (i)-(iv);

b. contacting the polypeptide with a binding agent capable of binding to the polypeptide, wherein the binding agent comprises (i) a coding tag that comprises identifying information regarding the binding agent; or (ii) a detectable label; and

c. analyzing the polypeptide by (i) obtaining signal from detectable label upon binding of the binding agent to the polypeptide; or (ii) c1) transferring the identifying information from the coding tag to the recording tag to generate an extended recording tag; and c2) analyzing the extended recording tag.

19 . The method of claim 18 , wherein the nitrogen protecting group is a carbamate, sulfonamide or acyl.

20 . The method of claim 18 , wherein analyzing the polypeptide comprises identifying an amino acid sequence of the polypeptide.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 18, 2026
From: ENCODIA, INC.
To: 2026 DF PEPTIDE ACQUISITION LLC
Reel/Frame 075642/0658 →
NON-RECOURSE ASSIGNMENT OF INTELLECTUAL PROPERTY SECURITY AGREEMENT Recorded Jan 30, 2026
From: FIRST-CITIZENS BANK & TRUST COMPANY
To: DF PEPTIDE ACQUISITION LLC
Reel/Frame 074539/0609 →
SECURITY INTEREST Recorded Oct 21, 2025
From: ENCODIA, INC.
To: FIRST-CITIZENS BANK & TRUST COMPANY
Reel/Frame 073175/0335 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2023
From: VERESPY, STEPHEN, III; BEASLEY, SAMANTHA
To: ENCODIA, INC.
Reel/Frame 065870/0635 →